“Nitrogen dioxide is a gas produced by the combustion of fuel at high temperature in the presence of oxygen. Exposure to nitrogen dioxide in the air carries with it significant risks to human health. A recent analysis from the Department for the Environment, Food and Rural Affairs (“DEFRA”) estimates that exposure to nitrogen dioxide has “an effect on mortality equivalent to 23,500 deaths annually in the [United Kingdom]”.”
“101. All else being equal, higher EGR Rates principally result in lower engine-out rates of NOx production and higher engine-out rates of particulate matter formation, which will give rise to increased DPF regeneration frequency.” 102. As explained in paragraph 92 above, DPF regenerations result in an increase (spike) in NOx, CO2, HC, and PM emissions. 103. Further, in normal operation and use, an increase in particulates will result in an increase in active DPF regenerations which will in turn result in an increase in NOx emissions during these regenerations.”
“106. A different “set of maps” exist for Mode 1 and Mode 2, and are based on original test bench mapping but both are optimised independently for different purposes. Broadly speaking, Mode 1 is optimised for NOx and other pollutant emissions (primarily by specifying lower target air mass which would be expected to result in a higher EGR Rate) and compliance with the NEDC, and Mode 2 is optimised for “comfort”
“(b) It is admitted that the… ECU… incorporated a software function which was capable of identifying the parameters of the … NEDC test and operated in mode 1 within those parameters, and mode 2 outside of those parameters; (c) It is admitted that in mode 1, the rate of ..EGR.. in the engine was generally higher than in mode 2, and that, all else being equal, a higher rate of EGR tends to reduce NOx but increase the generation of particulates in the combustion chamber of the engine.”
“3. To the best of VWAG's knowledge the software function was incorporated in the affected vehicles because certain engineering employees from its Diesel Engine Development and Powertrain Electronics departments involved in the development of the software function in affected EA189 engines were having difficulties in meeting the EU5 standards for the vehicles containing a 2.01 EA189 engine in respect of NOx emissions in the requisite timeframes. The use of the software function enabled them to meet the standard in the requisite timeframes and to optimise for customer comfort when the vehicles were not being tested. 4. For 1.21 and 1.61 engines in affected vehicles, to the best of VWAG's knowledge, the 2.01 EA189 engine was used as a base model and the desire for consistency of approach contributed to the inclusion of the software function in those engines. The inclusion of the software function in 1.21 and 1.61 engines in affected vehicles also enabled them to meet EU5 standards in the requisite timeframes and to optimise for customer comfort when the vehicles were not being tested.”
"The 5th to 6th Defendants shall provide a full explanation as to why the software function described in paragraph 8 of the Generic Defence was included in the engine control units of affected vehicles."
“(2) For the purposes of the establishment and operation of the internal market of the Community, it is appropriate to replace the Member States’ approval systems with a Community approval procedure based on the principle of total harmonisation. (3) The technical requirements applicable .. should be harmonised and specified in regulatory acts. Those regulatory acts should primarily seek to ensure a high level of road safety, health protection, environmental protection, energy efficiency and protection against unauthorised use. (4) … the scope of the present Directive should cover all categories of vehicles, enabling manufacturers to benefit from the advantages of the internal market by means of the Community type-approval… (11) By Council Decision 97/836/EC (2), the Community acceded to the Agreement of the United Nations Economic Commission for Europe concerning the adoption of uniform technical prescriptions for wheeled vehicles, equipment and parts which can be fitted to and/or used on wheeled vehicles and the conditions for reciprocal recognition of approvals granted on the basis of these prescriptions (Revised 1958 Agreement). Consequently, United Nations Economic Commission for Europe (UNECE) Regulations to which the Community accedes, in application of that Decision, and amendments to UNECE Regulations to which the Community has already acceded should be incorporated within the Community type-approval procedure either as requirements for EC vehicle type-approval, or as alternatives to existing Community law. In particular, where the Community decides, by means of a Council decision, that a UNECE Regulation shall become part of the EC vehicle type-approval procedure and replace existing Community law, the Commission should be empowered to make the necessary adaptations to this Directive… Consequently, United Nations Economic Commission for Europe (UNECE) Regulations to which the Community accedes, in application of that Decision, and amendments to UNECE Regulations to which the Community has already acceded should be incorporated within the Community type-approval procedure either as requirements for EC vehicle type-approval, or as alternatives to existing Community law. In particular, where the Community decides, by means of a Council decision, that a UNECE Regulation shall become part of the EC vehicle type-approval procedure and replace existing Community law, the Commission should be empowered to make the necessary adaptations to this Directive… (13) In order to ensure that the procedure for monitoring conformity of production, which is one of the cornerstones of the Community type-approval system, has been correctly implemented and functions properly, manufacturers should be regularly checked by the competent authority or by an appropriately qualified technical service appointed for that purpose. (14) The main objective of the legislation on the approval of vehicles is to ensure that new vehicles, components and separate technical units put on the market provide a high level of safety and environmental protection. This aim should not be impaired by the fitting of certain parts or equipment after vehicles have been placed on the market or have entered service. Thus, appropriate measures should be taken in order to make sure that parts or equipment which can be fitted to vehicles and which are capable of significantly impairing the functioning of systems that are essential in terms of safety or environmental protection, are subject to a prior control by an approval authority before they are offered for sale. These measures should consist of technical provisions concerning the requirements that those parts or equipment have to comply with… (23) Since the objective of this Directive, namely the achievement of the internal market through the introduction of a compulsory system of Community type-approval for all categories of vehicles, cannot be sufficiently achieved by the Member States and can, therefore, by reason of the scale of the action, be better achieved at Community level, the Community may adopt measures, in accordance with the principle of subsidiarity as set out in Article 5 of the Treaty.”
“Article 1 Subject matter This Directive establishes a harmonised framework containing the administrative provisions and general technical requirements for approval of all new vehicles within its scope and of the systems, components and separate technical units intended for those vehicles, with a view to facilitating their registration, sale and entry into service within the Community…Specific technical requirements concerning the construction and functioning of vehicles shall be laid down in application of this Directive in regulatory acts, the exhaustive list of which is set out in Annex IV Article 2 Scope 1. This Directive applies to the type-approval of vehicles designed and constructed in one or more stages for use on the road, and of systems, components and separate technical units designed and constructed for such vehicles. Article 3 Definitions 3. ‘type-approval’ means the procedure whereby a Member State certifies that a type of vehicle, system, component or separate technical unit satisfies the relevant administrative provisions and technical requirements; 5. ‘EC type-approval’ means the procedure whereby a Member State certifies that a type of vehicle, system, component or separate technical unit satisfies the relevant administrative provisions and technical requirements of this Directive and of the regulatory acts listed in Annex IV or XI; 23. ‘system’ means an assembly of devices combined to perform one or more specific functions in a vehicle and which is subject to the requirements of any of the regulatory acts; 33. ‘type-approval certificate’ means the document whereby the approval authority officially certifies that a type of vehicle, system, component or separate technical unit is approved; 36. ‘certificate of conformity’ means the document set out in Annex IX, issued by the manufacturer and certifying that a vehicle belonging to the series of the type approved in accordance with this Directive complied with all regulatory acts at the time of its production; Article 4 Obligations of Member States 1. Member States shall ensure that manufacturers applying for approval comply with their obligations under this Directive. 2. Member States shall approve only such vehicles, systems, components or separate technical units as satisfy the requirements of this Directive. 3. Member States shall register or permit the sale or entry into service only of such vehicles, components and separate technical units as satisfy the requirements of this Directive. They shall not prohibit, restrict or impede the registration, sale, entry into service or circulation on the road of vehicles, components or separate technical units, on grounds related to aspects of their construction and functioning covered by this Directive, if they satisfy the requirements of the latter. 4. Member States shall establish or appoint the authorities competent in matters concerning approval, and notify to the Commission such establishment or appointment in accordance with Article 43. The notification act of the approval authorities shall include the name, the address, including electronic address, and their area of responsibility. Article 8 General provisions 1. Member States may not grant any EC type-approval without first ensuring that the procedures referred to in Article 12 have been duly and satisfactorily implemented. Article 11 Tests required for EC type-approval 1. Compliance with the technical prescriptions laid down in this Directive and in the regulatory acts listed in Annex IV shall be demonstrated by means of appropriate tests performed by designated technical services. The test procedures, the specific equipment and tools necessary to perform those tests shall be described in each of the regulatory acts. 2. The required tests shall be performed on vehicles, components and separate technical units which are representative of the type to be approved. Article 12 Conformity of production arrangements 1. The Member State which grants an EC type-approval shall take the necessary measures in accordance with Annex X to verify, if need be in cooperation with the approval authorities of the other Member States, that adequate arrangements have been made to ensure that production vehicles, systems, components or separate technical units, as the case may be, conform to the approved type. Article 18 Certificate of conformity 1. The manufacturer, in his capacity as the holder of an EC type-approval of a vehicle, shall deliver a certificate of conformity to accompany each vehicle, whether complete, incomplete or completed, that is manufactured in conformity with the approved vehicle type. In the case of an incomplete or completed vehicle, the manufacturer shall complete only those items on side 2 of the certificate of conformity which have been added or changed at the current stage of approval and, if applicable, shall attach to the certificate all certificates of conformity delivered at the previous stage. Article 30 Vehicles, systems, components or separate technical units not in conformity with the approved type 1. If a Member State which has granted an EC type-approval finds that new vehicles, systems, components or separate technical units accompanied by a certificate of conformity or bearing an approval mark do not conform to the type it has approved, it shall take the necessary measures, including, where necessary, the withdrawal of type-approval, to ensure that production vehicles, systems, components or separate technical units, as the case may be, are brought into conformity with the approved type. The approval authority of that Member State shall advise the approval authorities of the other Member States of the measures taken. 2. For the purposes of paragraph 1, deviations from the particulars in the EC type-approval certificate or the information package shall be deemed to constitute failure to conform to the approved type. 3. If a Member State demonstrates that new vehicles, components or separate technical units accompanied by a certificate of conformity or bearing an approval mark do not conform to the approved type, it may ask the Member State which granted the EC type-approval to verify that vehicles, systems, components or separate technical units in production continue to conform to the approved type. On receipt of such a request, the Member State concerned shall take the requisite action as soon as possible and in any case within six months of the date of the request. INTERNATIONAL REGULATIONS Article 34 UNECE Regulations required for EC type-approval 1. UNECE Regulations to which the Community has acceded and which are listed in Part I of Annex IV and in Annex XI are part of the EC type-approval of a vehicle in the same way as the separate directives or regulations. They shall apply to the categories of vehicles listed in the relevant columns in the table of Part I of Annex IV and Annex XI.”
“(4) In March 2001 the Commission launched the Clean Air For Europe (CAFE) programme…This has led to the adoption of a thematic strategy on air pollution by a communication of21 September 2005 . One of the conclusions of the thematic strategy is that further reductions in emissions from the transport sector (air, maritime and land transport), from households and from the energy, agricultural and industrial sectors are needed to achieve EU air quality objectives. In this context, the task of reducing vehicle emissions should be approached as part of an overall strategy. The Euro 5 and 6 standards are one of the measures designed to reduce emissions of particulate matter and ozone precursors such as nitrogen oxides and hydrocarbons. (5) Achieving EU air quality objectives requires a continuing effort to reduce vehicle emissions. For that reason, industry should be provided with clear information on future emission limit values. This is why this Regulation includes, in addition to Euro 5, the Euro 6 stage of emission limit values. (6) In particular, a considerable reduction in nitrogen oxide emissions from diesel vehicles is necessary to improve air quality and comply with limit values for pollution. This requires reaching ambitious limit values at the Euro 6 stage without being obliged to forego the advantages of diesel engines in terms of fuel consumption and hydrocarbon and carbon monoxide emissions. Setting such a step for reducing nitrogen oxide emissions at an early stage will provide long-term, Europe-wide planning security for vehicle manufacturers. (7) In setting emissions standards it is important to take into account the implications for markets and manufacturers' competitiveness, the direct and indirect costs imposed on business and the benefits that accrue in terms of stimulating innovation, improving air quality, reducing health costs and increasing life expectancy, as well as the implications for the overall impact on carbon dioxide emissions. (12) Efforts should be continued to implement stricter emission limits, including reduction of carbon dioxide emissions, and to ensure that those limits relate to the actual performance of vehicles when in use. (15) The Commission should keep under review the need to revise the New European Drive Cycle [NEDC] as the test procedure that provides the basis of EC type-approval emissions regulations. Updating or replacement of the test cycles may be required to reflect changes in vehicle specification and driver behaviour. Revisions may be necessary to ensure that real world emissions correspond to those measured at type-approval. The use of portable emission measurement systems and the introduction of the ‘not-to exceed’ regulatory concept should also be considered. (16) OBD [On Board Diagnostics] systems are important in the control of emissions during the use of a vehicle. Due to the importance of controlling real world emissions, the Commission should keep under review the requirements for such systems and the tolerance thresholds for monitoring faults. (21) In order to clarify the scope of legislation on vehicle emissions, Directive 2005/55/EC...on the approximation of the laws of the Member States relating to the measures to be taken against the emission of gaseous and particulate pollutants from compression-ignition engines for use in vehicles, and the emission of gaseous pollutants from positive-ignition engines fuelled with natural gas or liquefied petroleum gas for use in vehicles should be amended in such a way as to cover all heavy-duty vehicles so as to make clear that this Regulation concerns light-duty vehicles [only]. (26) Power should also be conferred on the Commission to establish specific procedures, tests and requirements for type-approval, as well as a revised measurement procedure for particulates and a particle number based limit value, and to adopt measures concerning the use of defeat devices, access to vehicle repair and maintenance information and test cycles used to measure emissions. Since those measures are of general scope and are designed to supplement this Regulation by the addition of new non-essential elements, they should be adopted in accordance with the regulatory procedure with scrutiny provided for in Article 5a of Decision 1999/468/EC.”
“Article 1 Subject matter 1. This Regulation establishes common technical requirements for the type-approval of motor vehicles (vehicles) and replacement parts, such as replacement pollution control devices, with regard to their emissions. 2. In addition, this Regulation lays down rules for in-service conformity, durability of pollution control devices, on-board diagnostic (OBD) systems, measurement of fuel consumption and accessibility of vehicle repair and maintenance information. Article 2 Scope 1. This Regulation shall apply to vehicles of categories M 1, M 2, N 1 and N 2 [it is common ground that the affected vehicles here all fall within categories M 1 and N 1] Article 3 Definitions 4. ‘gaseous pollutants’ means the exhaust gas emissions of carbon monoxide, oxides of nitrogen, expressed in nitrogen dioxide (NO 2 ) equivalent, and hydrocarbons; 5. ‘particulate pollutants’ means components of the exhaust gas which are removed from the diluted exhaust gas at a maximum temperature of 325 °K (52 °C) by means of the filters described in the test procedure for verifying average tailpipe emissions; 6. ‘tailpipe emissions’ means the emission of gaseous and particulate pollutants; 7. ‘evaporative emissions’ means the hydrocarbon vapours emitted from the fuel system of a vehicle other than those from tailpipe emissions; 9. ‘on-board diagnostic system’ or ‘OBD system’ means a system for emission control which has the capability of identifying the likely area of malfunction by means of fault codes stored in a computer memory; 10. ‘defeat device’ means any element of design which senses temperature, vehicle speed, engine speed (RPM), transmission gear, manifold vacuum or any other parameter for the purpose of activating, modulating, delaying or deactivating the operation of any part of the emission control system, that reduces the effectiveness of the emission control system under conditions which may reasonably be expected to be encountered in normal vehicle operation and use; [emphasis added and I refer to the emission control system as the “ECS”] 11. ‘pollution control device’ means those components of a vehicle that control and/or limit tailpipe and evaporative emissions; Article 4 Manufacturers’ obligations 1. Manufacturers shall demonstrate that all new vehicles sold, registered or put into service in the Community are type approved in accordance with this Regulation and its implementing measures. Manufacturers shall also demonstrate that all new replacement pollution control devices requiring type-approval which are sold or put into service in the Community are type approved in accordance with this Regulation and its implementing measures. These obligations include meeting the emission limits set out in Annex I and the implementing measures referred to in Article 5. 2. Manufacturers shall ensure that type-approval procedures for verifying conformity of production, durability of pollution control devices and in-service conformity are met. In addition, the technical measures taken by the manufacturer must be such as to ensure that the tailpipe and evaporative emissions are effectively limited, pursuant to this Regulation, throughout the normal life of the vehicles under normal conditions of use. Therefore, in-service conformity measures shall be checked for a period of up to five years or 100 000 km, whichever is the sooner. Durability testing of pollution control devices undertaken for type-approval shall cover 160 000 km. To comply with this durability test, the manufacturers should have the possibility to make use of test bench ageing, subject to the implementing measures referred to in Paragraph 4. In-service conformity shall be checked, in particular, for tailpipe emissions as tested against emission limits set out in Annex I. In order to improve control of evaporative emissions and low ambient temperature emissions, the test procedures shall be reviewed by the Commission. 3. Manufacturers shall set out carbon dioxide emissions and fuel consumption figures in a document given to the purchaser of the vehicle at the time of purchase. 4. The specific procedures and requirements for the implementation of paragraphs 2 and 3 shall be established in accordance with the procedure referred to in Article 15(2). Article 5 Requirements and tests 1. The manufacturer shall equip vehicles so that the components likely to affect emissions are designed, constructed and assembled so as to enable the vehicle, in normal use, to comply with this Regulation and its implementing measures. 2. The use of defeat devices that reduce the effectiveness of emission control systems shall be prohibited. The prohibition shall not apply where: (a) the need for the device is justified in terms of protecting the engine against damage or accident and for safe operation of the vehicle; (b) the device does not function beyond the requirements of engine starting; or (c) the conditions are substantially included in the test procedures for verifying evaporative emissions and average tailpipe emissions. [emphasis added] 3. The specific procedures, tests and requirements for type-approval set out in this paragraph, as well as requirements for the implementation of paragraph 2, which are designed to amend non-essential elements of this Regulation, by supplementing it, shall be adopted in accordance with the regulatory procedure with scrutiny referred to in Article 15(3). This shall include establishing the requirements relating to: (a) tailpipe emissions, including test cycles, low ambient temperature emissions, emissions at idling speed, smoke opacity and correct functioning and regeneration of after-treatment systems;… (c) OBD systems and in-use performance of pollution control devices; (d) durability of pollution control devices, replacement pollution control devices, in-service conformity, conformity of production and roadworthiness;… (h) test equipment;… Article 10 Type-approval [see below] Article 13 Penalties 1. Member States shall lay down the provisions on penalties applicable for infringement by manufacturers of the provisions of this Regulation and shall take all measures necessary to ensure that they are implemented. The penalties provided for must be effective, proportionate and dissuasive. Member States shall notify those provisions to the Commission by2 January 2009 and shall notify it without delay of any subsequent amendment affecting them. 2. The types of infringements which are subject to a penalty shall include: (a) making false declarations during the approval procedures or procedures leading to a recall; (b) falsifying test results for type-approval or in-service conformity; (c) withholding data or technical specifications which could lead to recall or withdrawal of type-approval; (d) use of defeat devices; and (e) refusal to provide access to information. Article 14 Redefinition of specifications 3. The Commission shall keep under review the procedures, tests and requirements referred to in Article 5(3) as well as the test cycles used to measure emissions. If the review finds that these are no longer adequate or no longer reflect real world emissions, they shall be adapted so as to adequately reflect the emissions generated by real driving on the road. The necessary measures, which are designed to amend non-essential elements of this Regulation, by supplementing it, shall be adopted in accordance with the regulatory procedure with scrutiny referred to in Article 15(3).”
“implementing and amending [the] Regulation…on type-approval of motor vehicles with respect to emissions from light passenger and commercial vehicles (Euro 5 and Euro 6) and on access to vehicle repair and maintenance information”
“ANNEX III VERIFYING AVERAGE EXHAUST EMISSIONS AT AMBIENT CONDITIONS (TYPE 1 TEST) 1. INTRODUCTION This Annex describes the procedure for the type 1 test verifying the average exhaust emissions at ambient conditions. 2. GENERAL REQUIREMENTS 2.1. The general requirements shall be those set out in paragraph 5.3.1 of UN/ECE Regulation 83, with the exceptions described in sections 2.2 to 2.5. 2.2. The vehicles that are subject to the test set out in paragraph 5.3.1.1 shall be understood as being all vehicles covered by the scope of this Regulation. 2.3 The pollutants specified in paragraph 5.3.1.2.4 shall be understood as being all those covered by Tables 1 and 2 of Annex 1 of Regulation (EC) No 715/2007. 2.4. The reference to the deterioration factors from paragraph 5.3.6 in paragraph 5.3.1.4 shall be understood as being a reference to the deterioration factors specified in Annex VII to this Regulation. 2.5. The emission limits referred to in paragraph 5.3.1.4 shall be understood as being a reference to the emission limits set out in Table 1 of Annex 1 to Regulation (EC) No 715/2007 for Euro 5 vehicles, and in Table 2 of Annex 1 of Regulation (EC) No 715/2007 for Euro 6 vehicles.”
“3.13.3. At the request of the manufacturer, the test procedure specific to periodically regenerating systems shall not apply to a regenerative device if the manufacturer provides data to the approval authority that, during cycles where regeneration occurs, emissions remain below the standards given in Table 1 or 2 of Annex I to Regulation (EC) No 715/2007 applied for the concerned vehicle category after agreement of the technical service. 3.13.4. For a periodically regenerating device, during cycles where regeneration occurs, emission standards can be exceeded. If a regeneration of a pollution control device occurs at least once per type 1 test and the device has already regenerated at least once during vehicle preparation cycle, it shall be considered as a continuously regenerating system which does not require a special test procedure.”
“Emission control system: — type of catalytic converter (i. e. oxidation, three-way, heated catalyst, SCR, other), — type of particulate trap, — secondary air injection (i.e. with or without), — exhaust gas recirculation (i.e. with or without)”
“127. Conducting such testing in a laboratory has two principal advantages: repeatability and comparability of results. Laboratory conditions mean that various sources of variability, such as temperature and air pressure can be controlled. This means that the results of the NEDC are highly reproducible and, because the NEDC is consistent, the exhaust emissions values of one vehicle are directly comparable to the exhaust emissions values of every other vehicle under test conditions. 128. On the road, if the same vehicle is driven in the same manner, over the same distance-time corridor, and the conditions are the same as those under which it is tested in the laboratory, the exhaust emissions, including engine NOx emissions, will be similar. However, because you cannot control every variable affecting engine performance and emissions on the road, the results of any two tests will never be identical. 129. Given the highly specific nature of the NEDC requirements, it is unlikely that a vehicle driven in normal use will be driven at the same speeds, for the same time and in the same conditions as the conditions specified by the European Standards. 130. Real world driving is route-based, in that distance is fixed, defined by a starting point and a destination. As such, no two real-world routes are likely ever to be identical, due to traffic, ambient conditions and driver performance. Conversely, standardised laboratory tests are cycle-based, in the time and speed are defined. This, in turn, makes these cycles repeatable. The NEDC cycle involves some conditions that are almost certainly encountered in real-world driving, but identical recreation of all conditions and the continuous speed and time trace of the NEDC in its entirety during real-world driving is never encountered in the real world. To do so would require multiple factors including pre-conditioning, correct temperature and exact time/distance corridors and not steering the vehicle to be present at the same time. 131. Relevant factors that may influence fuel consumption and exhaust emissions on the road are: (a) related to the driver: the driver’s fitness on the day, acceleration behaviour, switching point/gearshifting speed and driving dynamics; (b) related to traffic: amount of traffic/traffic jams, traffic light stops (quantity, duration), speed profile, and acceleration profile; (c) related to external conditions: temperature, wind, rain and road conditions (wet, dry etc.); and (d) related to the vehicle condition: correction of quantity of fuel injection according to software update (new training), DPF regeneration in a cycle, use of heating/air condition, and consumer comforts (fan, windscreen wipers etc.). 132. There are differences between vehicle emissions under normal driving conditions (normal vehicle operation and use) and laboratory conditions. 133. The first test cycle to be legislated in the EU (or EEC at the time) was the ECE-15 in 1970 and it was designed to represent urban driving conditions of busy European cities at that time. There was an update to the test cycle in 1991 to try to better represent more demanding, high speed driving mode. Recently there has been an initiative to further update the testing procedures. In 2007, a working group of the United Nations Economic Commission for Europe (UN/ECE) began to develop a worldwide harmonized test procedure for light vehicles that has become known as the “Worldwide Harmonized Light Vehicles Test Procedure” (the WLTP). The WLTP includes a new test cycle that is designed to be more representative of average modern-day driving behaviour and limits the tolerances in and related to the NEDC. The WLTP came into force on1 September 2017 and all newly registered cars were required to undergo the WLTP testing from1 September 2018 . 134. There are tolerances in the current procedures regarding the assessment of vehicles before they are tested under the NEDC. Before a vehicle can be tested under the NEDC, and in an attempt to simulate normal driving conditions, the level of resistance of the dynamometer must be set to simulate the level of resistance the vehicle would experience if driven on the road. This resistance setting, known as the “road load” is adjusted for each specific vehicle that is tested and can be determined using different methods. 135. Road load and inertia settings simulate and assume various factors including a dry and level road, straight line driving (no turns), minimal wind, closed windows and that all devices not needed for driving the vehicle are turned off (e.g. air conditioning and headlamps). This makes no allowance for uphill / downhill driving, rain, significant wind speed, multiple passengers and luggage, and the use of systems that would be used in normal vehicle operation and use… 137. Further: (a) there are tolerances in the current procedures regarding the testing of vehicles under the NEDC. This may include things such as the reference mass of the vehicle, the choice of wheels and tyres, how the laboratory instruments are calibrated, the temperature of the test cell, use of higher gears and the driving technique of the individual driver; (b) there are specific vehicle operations, for example the regeneration of the DPF, that are not accounted for during the testing of the vehicle for NOx emissions; (c) vehicles can be tested in their “key-on” platform (e.g. standard mode) and would not be retested in other user selected platforms (e.g. sports or economy mode); (d) the steering wheel of the vehicles is not utilised (i.e. the wheels remain straight) and consequently the power steering function is not in use; and (e) factors relating to vehicle operation. This includes the use of on-board electrical equipment, such as air conditioning and entertainment systems as well as other external factors such as driving style, fuel quality, weather conditions and road surface.” (a) related to the driver: the driver’s fitness on the day, acceleration behaviour, switching point/gearshifting speed and driving dynamics; (b) related to traffic: amount of traffic/traffic jams, traffic light stops (quantity, duration), speed profile, and acceleration profile; (c) related to external conditions: temperature, wind, rain and road conditions (wet, dry etc.); and (d) related to the vehicle condition: correction of quantity of fuel injection according to software update (new training), DPF regeneration in a cycle, use of heating/air condition, and consumer comforts (fan, windscreen wipers etc.). (a) there are tolerances in the current procedures regarding the testing of vehicles under the NEDC. This may include things such as the reference mass of the vehicle, the choice of wheels and tyres, how the laboratory instruments are calibrated, the temperature of the test cell, use of higher gears and the driving technique of the individual driver; (b) there are specific vehicle operations, for example the regeneration of the DPF, that are not accounted for during the testing of the vehicle for NOx emissions; (c) vehicles can be tested in their “key-on” platform (e.g. standard mode) and would not be retested in other user selected platforms (e.g. sports or economy mode); (d) the steering wheel of the vehicles is not utilised (i.e. the wheels remain straight) and consequently the power steering function is not in use; and (e) factors relating to vehicle operation. This includes the use of on-board electrical equipment, such as air conditioning and entertainment systems as well as other external factors such as driving style, fuel quality, weather conditions and road surface.”
“the manufacture, selling, or installation of any device that bypasses, defeats, or renders inoperative a required element of the vehicle’s emissions control system.”
“Defeat device means an auxiliary emission control device (AECD) that reduces the effectiveness of the emission control system under conditions which may reasonably be expected to be encountered in normal vehicle operation and use, unless: (1) Such conditions are substantially included in the Federal emission test procedure; (2) The need for the AECD is justified in terms of protecting the vehicle against damage or accident; (3) The AECD does not go beyond the requirements of engine starting; or (4) The AECD applies only for emergency vehicles and the need is justified in terms of preventing the vehicle from losing speed, torque, or power due to abnormal conditions of the emission control system, or in terms of preventing such abnormal conditions from occurring, during operation related to emergency response…” (1) Such conditions are substantially included in the Federal emission test procedure; (2) The need for the AECD is justified in terms of protecting the vehicle against damage or accident; (3) The AECD does not go beyond the requirements of engine starting; or (4) The AECD applies only for emergency vehicles and the need is justified in terms of preventing the vehicle from losing speed, torque, or power due to abnormal conditions of the emission control system, or in terms of preventing such abnormal conditions from occurring, during operation related to emergency response…”
“any element of design which senses temperature, vehicle speed, engine RPM, transmission gear, manifold vacuum, or any other parameter for the purpose of activating, modulating, delaying, or deactivating the operation of any part of the emission control system.”
“a unique group of emission control devices, auxiliary emission control devices, engine modifications and strategies, and other elements of design designated by the Administrator [of the Environmental Protection Agency – “EPA”] used to control exhaust emissions of a vehicle.”
“Article 2.1.16. ‘Defeat device’ means any element of design which senses temperature, vehicle speed, engine RPM, transmission gear, manifold vacuum or any other parameter for the purpose of activating, modulating, delaying or deactivating the operation of any part of the emission control system, that reduces the effectiveness of the emission control system under conditions which may reasonably be expected to be encountered in normal vehicle operation and use. Such an element of design may not be considered a defeat device if: I. the need for the device is justified in terms of protecting the engine against damage or accident and for safe operation of the vehicle, or II. the device does not function beyond the requirements of engine starting, or III. conditions are substantially included in the Type I or Type VI test procedures.”
“Low temperature testing Conventional catalysts do not work effectively until they reach a high temperature. Emission tests have shown that emissions during the catalyst warm-up phase account for up to 80-90 % of emissions of the whole driving cycle. At sub-zero temperatures the percentages increase to 95-98 %. The test cycle used to approve vehicle emissions is set at a temperature above +20ºC. To overcome the cold start and cold weather problem new fast acting catalysts have been developed. A cold weather test for CO emissions at -7ºC is already mandatory in the United States. The Commission, however, has not proposed such a test in the European Union.”
“The use of a defeat device and/or irrational emissions control strategy is forbidden.”
“2.28 . “defeat device”means a device which measures, senses or responds to operating variables (e.g. vehiclespeed, engine speed, gear used, temperature, intake pressure or any other parameter) for the purpose ofactivating, modulating, delaying or deactivating the operation of any component or function of the emissioncontrol system such that the effectiveness of the emission control system is reduced under conditionsencountered during normal vehicle use unless the use of such a device is substantially included in the applied emission certification test procedures.’ [underlining added] “2.29 . “auxiliary control device” means a system, function or control strategy installed to an engine or on a vehicle, that is used to protect the engine and/or its ancillary equipment against operating conditions that could result in damage or failure, or is used to facilitate engine starting. An auxiliary control device may also be a strategy or measure that has been satisfactorily demonstrated not to be a defeat device. 2.30 . “irrational emission control strategy” means any strategy or measure that, when the vehicle is operated under normal conditions of use reduces the effectiveness of the ECS to a level below that expected during the test.”
“6.1.2.1. The use of a defeat device and/or an irrational emission control strategy is forbidden. 6.1.2.2. An auxiliary control device may be installed to an engine, or on a vehicle, provided that the device: — operates only outside the conditions specified in paragraph 6.1.2.4, or — is activated only temporarily under the conditions specified in paragraph 6.1.2.4 for such purposes as engine damage protection, air-handling device protection, smoke management, cold start or warming-up, or — is activated only by on-board signals for purposes such as operational safety and limp-home strategies…. 6.1.2.3. An engine control device, function, system or measure that operates during the conditions specified in Section 6.1.2.4 and which results in the use of a different or modified engine control strategy to that normally employed during the applicable emission test cycles will be permitted if, in complying with the requirements of Sections 6.1.3 and/or 6.1.4, it is fully demonstrated that the measure does not reduce the effectiveness of the emission control system. In all other cases, such devices shall be considered to be a defeat device. 6.1.2.4. For the purposes of point 6.1.2.2, the defined conditions of use under steady state and transient conditions ( 1 ) are: — an altitude not exceeding 1 000 metres (or equivalent atmospheric pressure of 90 kPa), — an ambient temperature within the range 283 to 303 K (10 to 30 °C), — engine coolant temperature within the range 343 to 368 K (70 to 95 °C).” — is activated only temporarily under the conditions specified in paragraph 6.1.2.4 for such purposes as engine damage protection, air-handling device protection, smoke management, cold start or warming-up, or — is activated only by on-board signals for purposes such as operational safety and limp-home strategies…. — an altitude not exceeding 1 000 metres (or equivalent atmospheric pressure of 90 kPa), — an ambient temperature within the range 283 to 303 K (10 to 30 °C), — engine coolant temperature within the range 343 to 368 K (70 to 95 °C).”
“2.1. For the purposes of this Directive, the following definitions shall apply: “defeat strategy” means: [1] [inserted]— an AECS that reduces the effectiveness of the emission control relative to the BECS under conditions that may reasonably be expected to be encountered in normal vehicle operation and use, or [2] [inserted] a BECS that discriminates between operation on a standardised type-approval test and other operations and provides a lesser level of emission control under conditions not substantially included in the applicable type-approval test procedures, …. “auxiliary emission control strategy (AECS)” means an emission control strategy that becomes active or that modifies the base emission control strategy for a specific purpose or purposes and in response to a specific set of ambient and/or operating conditions, e.g. vehicle speed, engine speed, gear used, intake temperature, or intake pressure; “base emission control strategy (BECS)” means an emission control strategy that is active throughout the speed and load operating range of the engine unless an AECS is activated. Examples for BECS are, but are not limited to: — engine timing map, — EGR map, — SCR catalyst reagent dosing map; 6.1.2 The use of a defeat strategy is forbidden… 6.1.5.2. An auxiliary emission control strategy (AECS) that operates within the conditions of use specified in section 6.1.5.4 and which results in the use of a different or modified emission control strategy (ECS) to that normally employed during the applicable emission test cycles will be permitted if, in complying with the requirements of section 6.1.7, it is fully demonstrated that the measure does not permanently reduce the effectiveness of the emission control system. In all other cases, such strategy shall be considered to be a defeat strategy. 6.1.5.3. An auxiliary emission control strategy (AECS) that operates outside the conditions of use specified in section 6.1.5.4 will be permitted if, in complying with the requirements of section 6.1.7, it is fully demonstrated that the measure is the minimum strategy necessary for the purposes of paragraph 6.1.5.6 with respect to environmental protection and other technical aspects. In all other cases, such a strategy shall be considered to be a defeat strategy. 6.1.5.4. As provided for in section 6.1.5.1, the following conditions of use apply under steady state and transient engine operations: — an altitude not exceeding 1 000 metres (or equivalent atmospheric pressure of 90 kPa), and — an ambient temperature within the range 275 K to 303 K (2 °C to 30 °C), and — engine coolant temperature within the range 343 K to 373 K (70 °C to 100 °C). 6.1.5.5. An auxiliary emission control strategy (AECS) may be installed to an engine, or on a vehicle, provided that the operation of the AECS is included in the applicable type-approval test and is activated according to section 6.1.5.6.”
“Article 3(8): ‘defeat strategy’ means an emission control strategy that reduces the effectiveness of the emission controls under ambient or engine operating conditions encountered either [1] [inserted] during normal vehicle operation or [2] [inserted] outside the type-approval test procedures; Article 3 (24) ‘Auxiliary Emission Strategy’ (hereinafter ‘AES’) means an emission strategy that becomes active and replaces or modifies a base emission strategy for a specific purpose and in response to a specific set of ambient and/or operating conditions and only remains operational as long as those conditions exist; Article 3(25) ‘Base Emission Strategy’ (hereinafter ‘BES’) means an emission strategy that is active throughout the speed and load operating range of the engine unless an AES is activated;… Article 5(3) The use of defeat strategies that reduce the effectiveness of emission control equipment shall be prohibited.”
“every provision of Community Law must be placed in its context and interpreted in light of the provisions of Community law as a whole, regard being had to the objectives thereof and to its state of evolution at the date on which the provision in question is to be applied.”
“the court should have regard to the objectives of the legislation. English statutes rarely contain statements of their objectives because they are often found not to be reliable guides to the detailed points of interpretation that tend to arise on English statutes. However, European Union directives frequently have long preambles setting out the purposes or reasons for the measures and what it is intended to achieve. This point is an indication that the objectives of a measure have a greater normative force under Community law than they would under English Law.”
“32 If the Union legislature had intended to cover, in Article 8(8) of that regulation, both regular and reduced weekly rest periods, it could have simply used the words ‘weekly rest periods’ to encompass both those types of rest period. “32 If the Union legislature had intended to cover, in Article 8(8) of that regulation, both regular and reduced weekly rest periods, it could have simply used the words ‘weekly rest periods’ to encompass both those types of rest period. 33 Furthermore, if all of a driver’s rest periods could be taken in the vehicle, the distinction made in Article 8(8) of Regulation No 561/2006 would be devoid of any meaning and that provision would thus lose its effectiveness. 34 That interpretation of Article 8(8) of Regulation No 561/2006 is supported by the legislative history of that provision, in that it shows, through the amendments made to that provision, the intention of the EU legislature.”
“An interpretation deduced from the absence of an express statement in a legal provision is acceptable only in the last resort, when no other interpretation appears to be adequate or compatible with the text of the provision, its context and its objectives.”
“ ‘emission control system’ [ECS] means, in the context of the OBD system, the electronic engine management controller and any emission-related component in the exhaust or evaporative system which supplies an input to or receives an output from this controller;”
“Requirements and Tests… 2. The use of defeat devices that reduce the effectiveness of emission control systems shall be prohibited. The prohibition shall not apply where: (a) the need for the device is justified in terms of protecting the engine against damage or accident and for safe operation of the vehicle; (b) the device does not function beyond the requirements of engine starting; or (c) the conditions are substantially included in the test procedures for verifying evaporative emissions and average tailpipe emissions.”
“Accordingly, the scale of the uncertainty resulting from the value of the CF pollutant conformity factors contained in the contested regulation [ie 2016/646] under no circumstances allows, contrary to the Commission’s claims, the limits on emissions of oxides of nitrogen laid down for the Euro 6 standard, contained in Annex I to Regulation No 715/2007, to be applied during the RDE tests, given the potentially very great discrepancies between those limits and the actual volumes of oxides of nitrogen emitted during the tests, even though the NTE values of those emissions are not exceeded according to the measurements taken by the PEMS. The scale of the uncertainty thus results in the de facto amendment of those limits for those tests, even though according to theprovisions of Regulation No 715/2007 those limits must be observed under real driving conditions and, therefore,during official tests under real driving conditions prior to type approval, as stated in paragraph 122 above.”
“any strategy or measure that, when the vehicle is operated under normal conditions of use reduces the effectiveness of the ECS to a level below that expected during the test.”
“ - strengthened provisions to act against the use of “defeat devices”1and “irrational” emission control strategies 2. This will require manufacturers to provide detailed information to justify the use, under defined operating conditions of any measure that may otherwise be considered a defeat device or an irrational emission control strategy. In addition, the proposal provides for an additional screening tool for type-approval authorities to ensure that such measures are not utilised by engines in real conditions of use.” 206.The two footnotes read as follows: “1 - Defeat devices are elements of engine or vehicle design which brings the operation of the emission control system reducing the effectiveness in normal vehicle use. 2 - Irrational emission control strategies are measures which reduce the effectiveness of emission control systems, when the vehicle is operated under normal conditions, to levels below those determined during the applicable emission test procedure.”
“Directive 1999/96/EC provided for new emission test cycles and prescriptions to prevent the use of defeat device and/or irrational emissions control strategy. It is now appropriate to strengthen those requirements and to provide a tool for authorities to determine whether engines are using defeat devices and/or irrational emissions control strategies under normal conditions of use to manipulate engine performance at the expense of emissions control.”
“ ‘defeat devices’ as dividing Article 3 (10)…. Reducing the level of emission control are prohibited. Recent events have highlighted the need to strengthen the enforcement in this respect. Therefore it is appropriate to require a better supervision of the emission control strategy applied by the manufacturer -type approval, following the principles already applied to heavy-duty vehicles by… Regulation… 595/2009 and its implementing measures.”
“[Q2] During your hearing of30 August 2016 you were asked about the discrepancy between the definitions and requirements in emissions legislation for Light Duty Vehicles (LDV) and for Heavy Duty Vehicles (HDV). In your written answer to question 8, you state that the use of defeat devices in HDVs in the U.S in 1998 led to the European Commission introducing clearer definitions and limitations on defeat devices and auxiliary control devices (in Directive 2001/27/EC). Indeed, definitions were added for ‘auxiliary control device’, which, if used to protect the engine, must be demonstrated not to be a defeat device before it can be considered acceptable to use. The Directive 2001/27/EC also included a definition of ‘irrational emission control strategy’, which means “any strategy or measure that, when the vehicle is operated under normal conditions of use, reduces the effectiveness of emission control system to a level below that expected on the applicable test procedures”
“‘defeat strategy’ means an emission control strategy that reduces the effectiveness of the emission controls under ambient or engine operating conditions encountered either during normal vehicle operation or outside the type-approval test procedures”
“The emissions legislation for heavy-duty vehicles has always been stricter on defeat devices than for light-duty vehicles. It remains unclear why the commission did not transpose these more stringent provisions from heavy to light-duty vehicles legislation.”
“Unlike in the case of heavy-duty vehicles, car manufacturers were not required to disclose or justify their emissions strategies. Having such an obligation would facilitate controlling for defeat devices. Even with RDE tests, the risk that defeat strategies are used cannot be completely excluded in the future.”
“acceptable emissions increases per combinations of pollutants, technologies and conditions”
“The JRC protocol proposed to introduce 4 categories of procedures to cover the possible situations. • In category 1, the testing is conducted in a laboratory under a controlled environment with only limited changes when compared to the legislative cycle and the modified parameters can be controlled. The modification of the testing conditions should not lead to a significant change in the physical response of the engine system. Examples of such modifications include testing vehicles with an open door or rolled-down windows. • In category 2, the testing is conducted in a laboratory or on the road with conditions different than the legislative cycle and the value of the modified parameters can be controlled….The classification of the tests within the different categories is the responsibility of the TAA and should be supported by the AES declarations delivered at type-approval. An example of a testing protocol is given in Annex III. 3.3. Evaluation of the test results for the various categories To facilitate the evaluation of tests under the various categories, it is recommended to develop testing thresholds corresponding to acceptable emissions increases per combinations of pollutants, technologies and conditions. Any emission test that falls above those testing thresholds should be classified as a "suspicious" case. Under category 1, emissions exceeding the recommended thresholds are a strong indication for a possible presence of prohibited defeat devices, since there can be no plausible explanation for an increase in pollutant emissions by simple modifications that do not affect the engine performance. In such a case, it is certain that the vehicle sensed that it is not tested in a regulatory cycle and therefore changed its emission level, i.e. a prohibited defeat device is present. Under categories 2 to 4, emissions exceeding the recommended thresholds might result from the possible presence of a defeat device and/or the physical effects upon the emissions control of an AES. Further investigations and explanations from the manufacturers will be needed….”
“Notwithstanding the requirements of paragraph 5.3.1.4., for each pollutant or combination of pollutants, one ofthe three resulting masses obtained may exceed, by not more than 10 per cent, the limit prescribed, provided thearithmetical mean of the three results is below the prescribed limit. Where the prescribed limits are exceeded for more than one pollutant, it is immaterial whether this occurs in the same test or in different tests.”
“6.1.5.5. An auxiliary emission control strategy (AECS) may be installed to an engine, or on a vehicle, provided that the operation of the AECS is included in the applicable type-approval test and is activated according to section 6.1.5.6. 6.1.5.6. The AECS is activated: — only by on-board signals for the purpose of protecting the engine system (including air-handling device protection) and/or vehicle from damage, or — for purposes such as operational safety, permanent emission default modes and limp-home strategies, or — for such purposes as excessive emissions prevention, cold start or warming-up, or — if it is used to trade-off the control of one regulated pollutant under specific ambient or operating conditions in order to maintain control of all other regulated pollutants within the emission limit values that are appropriate for the engine in question. The overall effects of such an AECS is to compensate for naturally occurring phenomena and do so in a manner that provides acceptable control of all emission constituents.”
“Extended Documentation Package The extended documentation package shall include the following information on all AES: (a) a declaration of the manufacturer that the vehicle does not contain any defeat device not covered by one of the exceptions in Article 5(2) of Regulation (EC) No 715/2007; (b) a description of the engine and the emission control strategies and devices employed, whether software or hardware, and any condition(s) under which the strategies and devices will not operate as they do during testing for TA; (c) a declaration of the software versions used to control these AES/BES, including the appropriate checksums of these software versions and instructions to the authority on how to read the checksums; the declaration shall be updated and sent to the Typeapproval Authority that holds this extended documentation package each time there is a new software version that has an impact to the AES/BES; (d) detailed technical reasoning of any AES including a risk assessment estimating the risk with the AES and without it, and information on the following: (i) why any of the exception clauses from the defeat device prohibition in Article 5(2) of Regulation (EC) No 715/2007 apply; (ii) hardware element(s) that need to be protected by the AES, where applicable; (iii) proof of sudden and irreparable engine damage that cannot be prevented by regular maintenance and would occur in the absence of the AES, where applicable; (iv) a reasoned explanation on why there is a need to use an AES upon engine start, where applicable; (e) a description of the fuel system control logic, timing strategies and switch points during all modes of operation; (f) a description of the hierarchical relations among the AES (i.e., when more than one AES can be active concurrently, an indication of which AES is primary in responding, the method by which strategies interact, including data flow diagrams and decision logic and how does the hierarchy assure emissions from all AES are controlled to the lowest practical level; (g) a list of parameters which are measured and/or calculated by the AES, along with the purpose of every parameter measured and/or calculated and how each of those parameters relates to engine damage; including the method of calculation and how well these calculated parameters correlate with the true state of the parameter being controlled and any resulting tolerance or factor of safety incorporated into the analysis; (h) a list of engine/emission control parameters which are modulated as a function of the measured or calculated parameter(s) and the range of modulation for each engine/emission control parameter; along with the relationship between engine/emission control parameters and measured or calculated parameters; (i) an evaluation of how the AES will control real-driving emissions to the lowest practical level, including a detailed analysis ofthe expected increase of total regulated pollutants and CO 2 emissions by using the AES, compared to the BES.”
“on the basis of these broad provisions, the software installed in the plaintiffs vehicle may also be an illegal defeat device… (See OLG Koln..OLG Koblenz …). Such software detects whether the vehicle is in a test cycle to determine the emission values and in this case switches to a mode in which more exhaust gases return to the engine and the emission of nitrogen oxides (NOx values) is reduced. In normal driving operation, however, such software activates another mode in which exhaust gas recirculation takes place only to a lesser extent; it thus determines the operating mode of the vehicle concerned-test bench run or real operation-on the basis of technical parameters and accordingly activates or deactivates gas recirculation which directly impairs the effectiveness of the emission control system.”
“… Is the passenger car defective because it possesses a prohibited defeat device. The Claimant has made no submissions in this regard. Ultimately, this is also irrelevant because it is probably the case that there is no defeat device present…”
“No prohibited defeat device within Article 3 (10) … is present. In accordance with the, to that extent, uncontested submission of the Defendant, under normal non-road driving conditions the software does not influence the emission control system the manipulation only concerns the laboratory test process. The registration of the vehicle in the Euro 5 categories is not called into question by the Federal Motor Transport Authority responsible for this.”
“Is the High Court of England and Wales bound (having regard to the terms and operation of the EC Type-approval legislation and pursuant to its duty of sincere cooperation) by the finding of the competent EU type-approval authority (the.. KBA, or by the [UK’s] Vehicle Certification Agency (VCA) in this case) that a vehicle contains a defeat device in circumstances where that finding could have been, but has not been, appealed by the manufacturer; and/or is it an abuse of process for the Defendants to seek collaterally to attack the KBA's and VCA’s reasoning or conclusions by denying that the affected vehicles contain defeat devices?”
“Information on right of challenge : This decision can be challenged within one month after notification. The challenge is to be made in writing or orally for recording to the Kraftfahrt-Bundesamt (German Federal Motor Transport Authority)..”
“As evidenced by the final decision of the KBA, the engine of type EA 189 contains impermissible defeat device pursuant to Article 3 no. 10 of [the]…Regulation…This alone satisfies the Senate that the existence of an impermissible defeat device is to be assumed. The submission by the Respondent denying this therefore remains of no significance.”
“27. Notwithstanding the above, after an independent appraisal by the Senate it is also established that an impermissible defeat device and not merely a purely internal engine management device, is present. 28. The…[BGH] .. Has also already indicated that an impermissible defeat device exists (… Indicative ruling of8 January 2019 …). The Senate adheres to this indicative ruling… 31. Based upon these broadly defined regulations, the software installed in the vehicle belonging to the Applicant is nothing other than an impermissible defeat device pursuant to Article 5 (2)… (See also Koblenz Higher Regional Court-… Decision of27 September 2017 ). This is because such software recognises whether the vehicle is undergoing the test cycle will be determination of emissions level and if this is the case switches to modus 1, in which the amount of exhaust gases are recirculated within the engine increases resulting in a reduction in the level of NOx output. In use under normal road traffic conditions the software activates modus 0, in which there is a lesser amount of exhaust gas recirculation; the software therefore uses technical parameters in order to determine the current type of operation of the vehicle-test procedure or real-life operation-and activates or deactivates accordingly the exhaust gas recirculation, which directly impacts on the effectiveness of the emissions control system.”
“With regard to the engine control software installed therein, the purchased car was afflicted with a considerable material defect as defined by § 434 (1) S. 2 No. 2 BGB (German Civil Code), which the [BGH] .. confirmed in its advisory opinion dated08 January 2019 ..; it justified this by stating that the vehicle was equipped with an inadmissible defeat device on the basis of which there was a risk of an operating ban by the authority responsible for admission to road traffic at the time the purchase contract was concluded and the suitability of the item for normal use (use in road traffic) was therefore lacking. The fact that the software installed by the defendant is a prohibited defeat device in accordance with Article 5(2) of Regulation (EC) No 715/2007 follows from the final decision of the Federal Motor Transport Authority of15 October 2015 addressed to the defendant. The Federal Motor Transport Authority thereby issued subsequently ancillary provisions to the EC type-approval granted for the drive unit at issue, which are intended to remove the impermissible defeat device and take appropriate measures to restore compliance. In the grounds for its decision, the Federal Motor Transport Authority, after a detailed examination of the objections raised by the defendant, came to the conclusion that there is an "impermissible defeat device", the removal of which is necessary. Following its own critical examination, the Senate refers to the arguments of the Federal Motor Transport Authority cited in the decision.”
“67 A prohibited defeat device within the definition of Article 5(2), Article 3 no. 10 of Regulation (EC) No 715/2007 was included in the Claimant’s vehicle. 68 This has been determined by the KBA and is accordingly binding upon the Court (see aaa directly below). But even if the Court were not bound to this, this finding is also correct in the opinion of the Court (see bbb below)….”
“It firstly finds that an impermissible defeat device within the meaning of Article 5 (2) and Article 3.10 of [the] Regulation… has been used in the construction of the car at issue. The corresponding decision of the [KBA].. is final and has a binding effect for the civil proceedings.”
“28. The distinction made by the defendant between "so-called internal engine measures" and "exhaust gas cleaning in the emission control system" cannot be inferred from the regulation and clearly contradicts its purpose. Emission control as defined by the Regulation is not limited to the cleaning of exhaust gases. By returning part of the exhaust gases (emissions) to the combustion process in the engine, emissions are controlled. This part of the control system is switched off by the driving cycle detection. The defendant's interpretation is also obviously contrary to the purpose of the Regulation, whereby the test procedure should, as far as possible, reflect the behaviour of the vehicle under normal operating conditions. Art. 5 (1) EC Reg. 715/2007 explicitly stipulates that the manufacturer must equip the vehicle in such a way that the components likely to influence the emission behaviour are designed, manufactured and installed in such a way that, under normal operating conditions, the vehicle complies with this Regulation and its implementing measures. Recital 15 of the Regulation refers to the objective that emissions measured during type-approval tests should be equivalent to those measured in practical driving conditions. By contrast, the defendant's engine management system is not linked to specific operating conditions or environmental conditions, but exclusively to the NEDC's findings, and is therefore deliberately aimed at controlling emissions in the exceptional case of an approval test. 28. Since the inadmissibility of the defeat device has been established to the court's satisfaction, the question of the binding effect of the decision of the Federal Motor Transport Authority is irrelevant.”
“provide a formal, binding declaration on whether your company sees itself as being in a position to remedy the technical issues admitted with regard to the aforementioned engines in accordance with Regulation (EC) No 715/2007. In addition, we expect you to submit a binding action plan and time schedule setting out how long it will take before this technical solution can be implemented for vehicles already in circulation.”
“89. Is Volkswagen taking – or has it already taken – action against the German Federal Motor Transport Authority to counter the allegations of manipulation? Volkswagen did not appeal against the Federal Motor Transport Authority’s decision of October 15, 2015. The software in vehicles with EA 189 engines does not, in Volkswagen’s opinion, constitute a forbidden defeat device under European law. Although this understanding of the legal position as presented by Volkswagen is at variance with the Federal Motor Transport Authority’s legal appraisal, Volkswagen purposefully chose not to appeal against the Federal Motor Transport Authority’s decision of October 15, 2015. Volkswagen wishes – specifically in the interest of customers – to work hand in hand in a constructive and cooperative spirit with regulatory authorities such as the Federal Motor Transport Authority in order to implement the agreed action plan as quickly as possible. It is important to prevent any dispute from jeopardising this close working relationship.”
“Pursuant to the principal of sincere cooperation, the Union and the Member States shall, in full mutual respect, assist each other in carrying out tasks which flow from the Treaties. The Member States shall take any appropriate measure, general or particular, to ensure fulfilment of the obligations arising out of the Committees or resulting from the acts of the institutions of the Union. The Member States shall facilitate the achievement of the Unions tasks and refrain from any measure which could jeopardise the attainment of the Unions objectives.”
“1 . If the Member State which has granted EEC type-approval finds that a number of vehicles accompanied by a certificate of conformity do not conform to the type which it has approved, it shall take the necessary measures to ensure that production models conform to the approved type. The competent authorities of that State shall advise those of the other Member States of the measures taken, which may, where necessary, extend to withdrawal of EEC type-approval. The said authorities shall take like measures if they are informed by the competent authorities of another Member State of such failure to conform. 2. The competent authorities of the Member States shall inform each other within one month of any withdrawal of EEC type-approval, and of the reasons for such measure. 3. . If the Member State which has granted EEC type-approval disputes the failure to conform notified to it, the Member States concerned shall endeavour to settle the dispute. The Commission shall be kept informed and shall, where necessary, hold appropriate consultations for the purpose of reaching a settlement.”
“I understand that VW may be in a position to announce a proposed fix to the emissions problem later this week, if that is the case then Skoda should approach VCA to discuss the proposed rectification action. VCA will need to be actively involved in any discussion that will result in the correction to the approval issued by the United Kingdom, after that discussion will be a need to understand how the defeat device operated and what assurances can be demonstrated at a similar strategy is not being followed.…”
“EA 189 powertrains with defeat device were installed into Skoda vehicles. At present, our customers can verify whether a respective vehicle is concerned by using the Internet Skoda application or a Skoda dealer. Notwithstanding the fact that a vehicle is affected, it is safe and can be operated safely. Procedure of rectifying measures relating to software and possible modifications of hardware is now being intensively processed. Afterwards the term of service measures/exchange of faulty devices will be determined. When the required technical measures are defined you will be informed without delay. Please find enclosed “Questions and Answers” file which provides replies to some other questions. We thank you for your support and understanding that some of your concrete questions can be answered only after the investigation in VW is finished.”
“VCA are obliged under the requirements of Article 32,007/36/EC ensure that vehicles systems components or separate technical units accompanied by a certificate of conformity… That do not conform to the type it has approved are brought back into conformity. Therefore I would like to ask you to make arrangements as soon as possible to come to VCA to explain the issues that led to the current admissions of non-conformance and to present a solution and a timescale to the non-conformances.”
“Using the presentation Volkswagen AG gave to the KBA on 13.10.2015, SKODA presented the schedule and action plan, i.e. the technical background, proposed timeline and measures planned for the field campaign for the EA189 affected Diesel vehicles. The parties agreed on the following: SKODA acknowledged that the VCA as EC type-approval authority for the SKODA vehicles (and SEAT Toledo) in the EU is the responsible authority to discuss and decide on any schedule and action plan SKODA is planning with regard to the EA 189 Diesel engines. VCA and SKODA agreed that a statement on the technical effects on the cars in real drive mode after the fix has been made needs to be made public as soon as the effects are clear. Currently, it is foreseen that it will have minimal effect on vehicle driving characteristics in normal use, but any degradation must be precisely quantified and communicated. VCA pointed out to SKODA, that it is important to tell the customers what the aim of the fix is and what it practically means to them (e.g. before the fix 50 miles per gallon, after the fix 49,7 miles per gallon) A common understanding between VCA and SKODA needs to be determined how to define customer fuel economy. As there in no equivalent for the "ADAC Ecotest" in the UK VCA suggests to use their road testing and agreed to provide SKODA with details on the recommended testing regime closest to the real world driving conditions (34% urban, 33% rural, 33% highway) This subject needs to be discussed in further detail in the upcoming meetings between VCA and SKODA. Following the comprehensive presentation of the VW schedule and action plan and timelines which are equally applicable to those of SKODA, VCA in principle agreed that these are feasible for SKODA. For a final approval SKODA will provide VCA with a measure and action plan for all vehicles that VCA approves (SKODA fleet +SEAT Toledo). Subject to a further review VCA will acknowledge the schedule and action plan. SKODA Foreseen timing for delivering the technical details of the fix for the EA189 2.01 engine is by 23.10.2015 and for the 1.21 by end of November 2015. SKODA will provide the timing for the 1.6 as soon as possible. SKODA agreed to provide VCA with a 2.01 EA189 Superb vehicle with the current software and when available (in ca 2 weeks) an ECU with the proposed fix (to be further developed later to suit the customers' needs), so that VCA can conduct independent testing of emissions before and after the fix. VCA stated that based on the current information provided by SKODA and subject to VCA's own evaluation and analysis, the issues around emissions of the EA 189 Diesel engines can be resolved by SKODA' s schedule and action plan as a voluntary service action in all 28 EU Member States, on a consensual basis with VCA. VCA notes that the produced EA 189 Diesel vehicles do not deviate from the EC type-approval and will be made compliant with emissions standards by implementing the schedule and action plan. Once VCA reaches a final decision based on the schedule and action plan provided by SKODA, VCA will communicate this to the Secretary of State (Minister of Transport), and afterwards to all other EU Member States. Furthermore, SKODA intends to address all EU Member States with a letter explaining the state of play and outcomes from discussions with VCA and kindly ask respective authorities for support (this letter to be coordinated with VCA communication). SKODA agreed to provide VCA with the documents delivered by VW AG to the KBA, including detailed technical spreadsheets. Contact persons for the exchange of information will remain as they are, that is Mr. Derek Lawlor for the VCA and Mr. Jan Novak for SKODA. SKODA agreed to provide VCA with an overview of authorities approving the different VW Group brands in Europe. Paul Willis informed VCA that he will inform the UK Secretary of State those cars with EA189 Diesel engines which already have been sold will be released for delivery to customers. He pointed to the necessity to release cars which are needed for disabled people, gas service and other instances. Customers will be informed about the necessity to come for a service action after delivery. SKODA will ask its importers in Europe to act in a similar way in the other EU Member States (already sold cars should in fact be delivered to avoid interference with customer rights; however, they should be part of the fix, i.e. the schedule and action plan). VCA informed SKODA that the approval of model update for the CW45/2015 has been granted.”