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Fault Detection in Idle Speed Control of IC Engines

机译:内燃机怠速控制中的故障检测

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This paper presents a fault detection method for the idle speed control of an internal combustion (IC) engine. Two specific faults are addressed: throttle faults - actuator faults due to a mismatch between the throttle command and the actual throttle position, and manifold pressure sensor faults - faults due to an incorrect measurement of the manifold pressure. The main objective is to detect these two faults even in the presence of external torque loads varying from 5 up to 10Nm, and considering a modeling fault related to temperature variations. The proposed approach is based on residual generators using the parity equation and an active threshold calculation technique. An external torque observer is implemented, in order to simulate the external torque disturbances. Simulation results show 100% fault detection during nominal temperature conditions, and 89.6% fault detection during the initial operating stage of the engine.
机译:本文提出了一种用于内燃机(IC)怠速控制的故障检测方法。解决了两个特定的故障:节气门故障-由节气门指令与实际节气门位置不匹配引起的执行器故障,以及歧管压力传感器故障-由歧管压力的不正确测量导致的故障。主要目的是即使存在5到10Nm的外部转矩负载,也要检测这两个故障,并考虑与温度变化有关的建模故障。所提出的方法基于使用奇偶校验方程和主动阈值计算技术的残差生成器。为了模拟外部扭矩干扰,实施了外部扭矩观测器。仿真结果表明,在标称温度条件下的故障检测率为100%,在发动机初始运行阶段的故障检测率为89.6%。

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