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New Challenges and Technologies for the Emissions Monitoring System (OBD) in Heavy Duty Diesel Engines to Meet the Requirements of the PROCONVE P7

机译:重型柴油发动机排放监测系统(OBD)的新挑战与技术,以满足PROCONVE P7的要求

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Due to the independent operation between the aftertreatment systems and the engine, the aim of the On Board Diagnostic System (OBD) is to ensure the engine emissions stay within the emissions standards during the whole vehicle useful life. In the case of the heavy duty diesel vehicles that use the Selective Catalytic Reduction System (SCR) or the Exhaust Gas Recirculation System (EGR) as the NO_x aftertreatment technologies to meet the stringent emissions levels, the use of sensors in the exhaust pipe is required to control and to monitor the engine emissions. These are new and great challenges to the national diesel engine developers who are working with these systems to get the homologation certification. Accurate mathematic models within the automotive control strategies are becoming ever more important and are strongly used to monitor the NO_x emissions directly (in case of SCR systems using the NO_x sensor) or indirectly (in case of EGR systems using the Lambda sensor). The subject of this paper is to study the operation of the aftertreatment systems, to explore the charactheristics of the NO_x and Lambda sensors and to analyse their behaviour in real applications, applying them into the emissions control and monitoring systems to achieve the legal requirements.
机译:由于后处理系统和发动机之间的独立操作,船上诊断系统(OBD)的目的是确保发动机排放在整个车辆使用寿命期间保持在排放标准内。在使用选择性催化还原系统(SCR)或废气再循环系统(EGR)作为NO_X后处理技术以满足严格排放水平的情况下,需要在排气管中使用传感器控制和监控发动机排放。这些是与这些系统一起使用的国家柴油发动机开发商来获得同源认证的新的和巨大挑战。汽车控制策略中的准确数学模型变得更加重要,并且强烈用于直接监测NO_X排放(如果使用NO_X传感器的SCR系统)或间接(如果使用Lambda传感器的EGR系统的情况)。本文的主题是研究后处理系统的操作,探讨NO_X和LAMBDA传感器的Charactristics,并分析其在实际应用中的行为,将它们应用于排放控制和监测系统以实现法律要求。

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