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A Soft Sensor-Based Fault-Tolerant Control on the Air Fuel Ratio of Spark-Ignition Engines

机译:基于软传感器的火花点火式发动机空燃比容错控制

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摘要

The air/fuel ratio (AFR) regulation for spark-ignition (SI) engines has been an essential and challenging control problem for engineers in the automotive industry. The feed-forward and feedback scheme has been investigated in both academic research and industrial application. The aging effect can often cause an AFR sensor fault in the feedback loop, and the AFR control performance will degrade consequently. In this research, a new control scheme on AFR with fault-tolerance is proposed by using an artificial neural network model based on fault detection and compensation, which can provide the satisfactory AFR regulation performance at the stoichiometric value for the combustion process, given a certain level of misreading of the AFR sensor.
机译:火花点火(SI)发动机的空燃比(AFR)法规对于汽车行业的工程师而言一直是至关重要且具有挑战性的控制问题。前馈和反馈方案已在学术研究和工业应用中进行了研究。老化效应通常会在反馈环路中引起AFR传感器故障,并且AFR控制性能将因此下降。在研究中,提出了一种基于故障检测和补偿的人工神经网络模型,提出了一种具有容错性的AFR控制新方案,在一定的化学计量条件下,可以提供令人满意的AFR调节性能。 AFR传感器的误读级别。

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