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Investigation on Pre-Ignition Combustion Events and Development of Diagnostic Solutions Based on Ion Current Signals

机译:基于离子电流信号的预点火燃烧事件及诊断液的开发研究

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Pre-ignition combustions are extremely harmful and undesired, but the recent search for extremely efficient spark-ignition engines has implied a great increase of the in-cylinder pressure and temperature levels, forcing engine operation to conditions that may trigger this type of anomalous combustion much more frequently. For this reason, an accurate on-board diagnosis system is required to adopt protective measures, preventing engine damage. Ion current signal provides relevant information about the combustion process, and it results in a good compromise between cost, durability and information quality (signal to noise ratio levels). The GDI turbocharged engine used for this study was equipped with a production ion current sensing system, while in-cylinder pressure sensors were installed for research purposes, to better understand the pre-ignition phenomenon characteristics, and to support the development of an on-board diagnostic system solely based on ion current measurements. In this work, pre-ignition events induced by heavy knocking operation have been analysed. The focus was mainly on ion current signal real-time processing, and on the possibility to correctly and rapidly detect pre-ignition events. In a previous work, destructive effects of this kind of combustion on engine components had been described. As shown in the paper, the development and implementation of an ion current based detection algorithm results to be very effective in identifying pre-ignition combustions, and it could allow an extremely fast reaction of the engine controller that can prevent further anomalous combustions once the first event has occurred. Moreover, pre-ignition phase information extracted from the ion signal and characteristic combustion angles obtained from pressure signal analysis are well correlated, further confirming the ion signal robustness and accuracy.
机译:预点火燃烧极为危害和不希望的,但最近寻找极其高效的火花点火发动机的搜索暗示了缸内压力和温度水平的大大增加,强迫发动机运行到可能引发这种异常燃烧的条件更频繁。因此,需要准确的车载诊断系统来采用保护措施,防止发动机损坏。离子电流信号提供有关燃烧过程的相关信息,并且它导致成本,耐久性和信息质量(信噪比水平的信号)之间的良好折衷。用于本研究的GDI涡轮增压发动机配备了生产离子电流检测系统,而缸内压力传感器被安装用于研究目的,以更好地了解预点火现象特性,并支持车载开发仅基于离子电流测量的诊断系统。在这项工作中,已经分析了由重爆击操作引起的预点火事件。重点主要是离子电流信号实时处理,并且可以正确地迅速检测点火前事件的可能性。在以前的工作中,已经描述了这种燃烧对发动机部件的破坏性效果。如图所示,基于离子电流的检测算法的开发和实现导致在识别预点火燃烧时非常有效,并且它可以允许发动机控制器的极快反应,这可以防止进一步异常燃烧事件已发生。此外,从压力信号分析中获得的离子信号和特征燃烧角提取的预点火阶段信息很好地相关,进一步证实了离子信号的鲁棒性和精度。

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