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ASSESSMENT OF NOVEL IN-LINE PARTICULATE MATTER SENSOR WITH RESPECT TO OBD AND EMISSIONS CONTROL APPLICATIONS

机译:关于OBD和排放控制应用的新型在线颗粒物传感器的评估

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Upcoming emissions legislations and On-Board-Diagnostics (OBD) system requirements, both in the US and Europe, impose new challenges for paniculate matter (PM) control strategies, especially with regard to upcoming EURO-VI regulations that are expected to limit the paniculate number (PN) emissions. Indeed, the US-EPA Heavy-Duty-OBD regulations already require monitoring of diesel paniculate filters (DPF) in 2010 for at least one engine series, with extension to all engine series by 2013. Due to the current absence of reliable in-line PM sensors to monitor DPF filtration efficiencies, manufacturers adopted alternative methods based on pressure drop measurements and semi-empirical models that require extensive calibration efforts; hence, driving upward the development costs. In order to meet upcoming OBD requirements and reduce unnecessary DPF regeneration frequencies, so as to minimize fuel consumption penalties, reliable sensors need to be integrated into the aftertreatment control environment. These next-generation sensors must be capable of performing actual real-time PM concentration measurements on a continuous basis within the exhaust stream. The primary objective of this study was to assess the capabilities, limitations and sensitivity of a newly developed inline PM sensor, with regard to its future application for OBD monitoring or control strategies of PM filter systems. The operation of the so called Pegasor Paniculate Sensor (PPS) [1] is based on the escaping current principle. The instrument is capable of performing continuous PM measurements, directly from the exhaust stack, while providing a real-time signal with a resolution of 100 Hz. The sensor's output signal can be calibrated to either measure the concentration of mass, surface or number of exhaust particles. Designed as a flow-through device, the PPS has a tungsten corona wire imposing an equal charge on particles that is subsequently measured from the outflowing particles via a built-in electrometer. The system does not involve collection or contact with particles in the exhaust stream, which is especially advantageous for long-term stability and operation without frequent maintenance; hence, best suited for in-use application. A comprehensive test matrix was developed to gain a more pronounced understanding of the sensor's measurement technology by comparing it to other proven aerosol instruments, namely the Ultrafine Condensation Particle Counter (UCPC), Engine Exhaust Particle Sizer (EEPS?) spectrometer, Tapered Element Oscillating Microbalance (TEOM), and gravimetric PM. Test results demonstrated a stable and repeatable response over consecutive European Transient Cycle (ETC) and Federal Test Procedure (FTP) cycles, as well as over idle and constant load operation with coefficients of variation below 2%, which is a prerequisite for OBD algorithm implementation.
机译:即将到来的排放法规和板载-诊断(OBD)系统的要求,无论是在美国和欧洲,并处为圆锥状物质(PM)的控制策略新的挑战,尤其是对于那些希望限制圆锥即将到来的EURO-VI法规数(PN)的排放量。事实上,美国环保署重型-OBD法规已经要求在2010年到2013年由于监控柴油圆锥状过滤器(DPF)的至少一个发动机系列,扩展到所有的发动机系列目前缺乏可靠的在线的PM传感器来监测DPF过滤效率,制造商采用了基于压降测量,并且需要大量的校准工作半经验模型的替代方法;因此,驾驶向上的开发成本。为了满足即将到来的OBD要求并减少不必要的DPF再生频率,以便最小化燃料消耗处罚,可靠的传感器需要被集成到后处理控制环境。这些下一代传感器必须能够在排气流内的连续的基础上进行实际的实时PM浓度测量的。主要目的本研究的是评估能力,限制和新开发的直列PM传感器的灵敏度,就以它的未来OBD监视或PM过滤器系统的控制策略应用。所谓圆锥Pegasor传感器(PPS)[1]的操作是基于逸出电流原理。该仪器能够执行连续PM测量,直接从排气管,同时提供一个实时信号以100Hz的分辨率。传感器的输出信号可以被校准以任一测量质量,表面或排气颗粒数的浓度。设计成流通装置,所述PPS具有钨电晕丝上的颗粒施加相等的电荷随后从流出颗粒通过一个内置的静电计测量。该系统不涉及集合或与废气流,这对于长期稳定性和操作,而不频繁的维护是特别有利的在颗粒接触;因此,最适合于使用中的应用程序。一个全面的测试矩阵开发通过比较其他成熟的气溶胶仪器,即超细凝聚核粒子计数器(UCPC),发动机排气粒度分析仪(EEPS?)光谱仪,圆锥元振荡微量天平获得传感器的测量技术的更明显的认识(TEOM)和重量PM。试验结果证明了稳定的和在连续的欧洲瞬态循环(ETC)和联邦测试程序(FTP)周期,以及超过空闲和恒定负荷运行具有低于2%,变异系数可重复的响应是用于OBD算法实现的先决条件。

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