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首页> 外文期刊>Sensors Journal, IEEE >Virtual Sensors for Automotive Engine Sensors Fault Diagnosis in Second-Order Sliding Modes
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Virtual Sensors for Automotive Engine Sensors Fault Diagnosis in Second-Order Sliding Modes

机译:用于汽车发动机传感器的虚拟传感器在二阶滑模下的故障诊断

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摘要

Automotive engine functions are entirely dependent on installed sensors performance. Any malfunction in the sensors can lead to degraded engine efficiency. This manuscript presents a novel scheme to devise virtual sensors for health monitoring of engine air intake path sensors. The proposed scheme assists in: Sensing of critical immeasurable parameters like Volumetric and Combustion efficiency, development of Virtual Sensor from manifold pressure dynamics for rotational speed and vice versa, Health Monitoring of the manifold pressure and crankshaft sensor. For the suggested scheme, two robust second-order sliding mode observers are employed that require two state mean value engine model based on inlet manifold pressure and rotational speed dynamics. The proposed methodology has the potential of online implementation on any automotive engine after minor tuning. In this paper, the procedure is customized for 1.3 L gasoline engine sensors: Manifold Pressure and Crankshaft sensor. The implementation results demonstrate that all the three mentioned tasks are accomplished efficiently.
机译:汽车发动机功能完全取决于安装的传感器性能。传感器中的任何故障都可能导致发动机效率下降。该手稿提出了一种新颖的方案,以设计虚拟传感器来对发动机进气路径传感器进行健康监测。拟议的方案有助于:不可估量的关键参数(如体积和燃烧效率)的传感,基于歧管压力动力学的转速虚拟传感器的开发(反之亦然),歧管压力和曲轴传感器的健康监测。对于建议的方案,使用了两个鲁棒的二阶滑模观测器,这些观测器需要基于进气歧管压力和转速动力学的两个状态均值发动机模型。所提出的方法有可能在稍作调整后在任何汽车发动机上在线实施。在本文中,该程序是针对1.3 L汽油发动机传感器定制的:歧管压力和曲轴传感器。实施结果表明,上述三项任务均得到有效完成。

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