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Development of a Torsional Behavior Powertrain Model for Multiple Misfire Detection

机译:用于多重失火检测的扭转行为动力总成模型的开发

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Many methodologies have been developed in the past for misfire detection purposes based on the analysis of the instantaneous engine speed. The missing combustion is usually detected, thanks to the sudden engine speed decrease that takes place after a misfire event. Misfire detection and, in particular, cylinder isolation are nevertheless still a challenging issue for engines with a high number of cylinders, for engine operating conditions at low load or high engine speed, and for multiple misfire events. When a misfire event takes place, a torsional vibration is excited and shows up in the instantaneous engine speed wave form. If a multiple misfire occurs, this torsional vibration is excited more than once in a very short time interval. The interaction between these successive vibrations can generate false alarms or misdetection, and an increased complexity when dealing with cylinder isolation. This paper presents the development of a powertrain torsional behavior model in order to identify the effects of a misfire event on the instantaneous engine speed signal. The identified wave form has then been used to filter out the torsional vibration effects in order to enlighten the missing combustions even in the case of multiple misfire events. The model response is also used to speed up the setup process for the detection algorithm employed, thus evaluating, before running specific experimental tests on a test bench facility, the values for the threshold and the optimal setup of the procedure. The proposed algorithm is developed in this paper for an SI LA engine; its application to other engine configurations is possible, as is also discussed in this paper.
机译:过去,基于对发动机瞬时转速的分析,已经开发出许多方法用于失火检测。通常,由于失火事件发生后发动机转速突然降低,通常会检测到缺少的燃烧。然而,对于具有大量汽缸的发动机,低负荷或高发动机转速的发动机工况以及多种失火事件,失火检测以及特别是汽缸隔离仍然是一个具有挑战性的问题。发生失火事件时,会产生扭转振动,并以瞬时发动机转速波形显示。如果发生多次失火,则该扭转振动会在很短的时间间隔内多次激发。这些连续振动之间的相互作用会产生错误警报或错误检测,并在处理气缸隔离时增加复杂性。本文提出了动力总成扭转行为模型的发展,以识别失火事件对瞬时发动机转速信号的影响。识别出的波形随后被用于滤除扭转振动影响,以便即使在发生多次失火事件的情况下也能消除缺失的燃烧。模型响应还用于加快所用检测算法的设置过程,从而在测试台设备上运行特定的实验测试之前,评估阈值和程序的最佳设置。本文针对SI LA引擎开发了该算法。如本文所讨论的,将其应用于其他发动机配置也是可能的。

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