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首页> 外文期刊>International Journal of Automotive Technology >Degree of fault isolability and active fault diagnosis for redundantly actuated vehicle system
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Degree of fault isolability and active fault diagnosis for redundantly actuated vehicle system

机译:冗余驱动车辆系统的故障隔离度和主动故障诊断

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摘要

This paper proposes a degree of fault isolability concept and active fault diagnosis method for redundantly actuated vehicle systems. Fault isolability is a structural property related to system dynamics and composition of actuators and sensors. Existing research on testing fault isolability has involved checking whether the system is isolable, i.e., binary in nature. A continuous value rather than a binary metric is needed to evaluate how isolable a given system fault is based on a specific measurement set. After fault components are isolated, the fault type and magnitude are estimated by analyzing residual vectors. In a redundantly actuated system, the number of controls/actuators is greater than the system mobility. Thus, the control input distribution to achieve a given control objective is not unique. In the case of a fault, the active fault diagnosis system adjusts the control input distribution to diagnose the fault. Thus, much more system information can be identified by additional excitation through a redundantly actuated system, which improves the fault diagnosis performance. Simulation results of a four-wheel independently driven and steered vehicle model validated the proposed degree of fault isolability and the effectiveness of the proposed active fault diagnosis method.
机译:本文提出了一种冗余度驱动的车辆系统故障隔离度概念和主动故障诊断方法。故障可隔离性是与系统动力学以及执行器和传感器的组成有关的结构属性。关于测试故障可隔离性的现有研究涉及检查系统是否可隔离,即本质上是二进制的。需要一个连续值而不是二进制度量来评估给定系统故障基于特定测量集的可隔离性。隔离故障分量后,可通过分析残差矢量来估计故障类型和大小。在冗余驱动的系统中,控件/执行器的数量大于系统的移动性。因此,实现给定控制目标的控制输入分布不是唯一的。在出现故障的情况下,主动故障诊断系统会调整控制输入分配以诊断故障。因此,通过冗余驱动系统的额外激励可以识别更多的系统信息,从而提高了故障诊断性能。四轮独立驾驶和转向的车辆模型的仿真结果验证了所提出的故障隔离性和所提出的主动故障诊断方法的有效性。

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