基于模型的喷油器早期故障检测新方法

J. Mączak, K. Wieclawski, K. Szczurowski
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引用次数: 1

摘要

这项工作的目的是开发一种通过观察发动机控制单元中可用的电流参数来实时诊断电磁喷油器的方法。执行这项任务需要找到一个精确的标准来评估电磁注入器的正确操作。为此,使用了描述注入器运行各个阶段的数学模型,从而可以模拟典型故障的发生。在此基础上,通过观察控制电路中的电流参数来确定特定故障的症状。观察电压和电流波形可以定位喷油器的电气和机械损坏,并评估电力系统组件的正确性。所提出的诊断方法可以在其发展的早期阶段检测到所描述的损坏,从而防止对催化转化器和其他发动机系统(阀门,活塞环或气缸表面)的损坏,即由不正确的燃料混合物造成的损坏。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
New approach of model based detection of early stages of fuel injector failures
The aim of the work was to develop a method of real time diagnosing electromagnetic fuel injectors using the observation of electric current parameters available in the engine control unit. Performing this task required finding a precise criterion for assessing the correct operation of an electromagnetic injector. For this purpose, a mathematical model describing the individual phases of the injector's operation was used, allowing the simulation of the occurrence of typical failures. On its basis, symptoms of particular failures were determined based on the observation of electric current parameters in the control circuit. Observation of voltage and current waveforms allows to locate both electrical and mechanical damages to the injectors and to assess the correctness of the power system components. The presented diagnostic method allows the detection of the described damages in the early stages of their development, which prevents damage to the catalytic converter and other engine systems (valves, piston rings or cylinder surfaces), i.e. damages resulting from an incorrect fuel mixture.
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