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Model-based fault diagnosis and prognosis for Electric Power Steering systems

机译:基于模型的电力转向系统故障诊断和预后

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Electric Power Steering (EPS) is an advanced steering system that consists of two subsystems: electrical and mechanical subsystems. EPS systems not only provide steering assist to drivers but they are also actuators for recently developed active safety features, such as lane keeping and lane changing assist. Failure of some component of the EPS system can lead to walk-home situations and increased warranty costs. Hence, for the improvement of reliability, safety, and efficiency of EPS systems, fault detection, diagnosis, and prognosis become increasingly important. This paper provides fault detection for EPS systems through model-based techniques using parameter estimation to determine the current electric parameters of the EPS motor. In addition, by monitoring the deviation of the self-aligning torque (SAT) estimated from two different methods, changes in EPS mechanical parameters can be detected. The progression of this deviation can be fed into a health state estimator which can give an indication of state of health and remaining useful life. Computer simulations as well as hardware-in-the-loop (HIL) experiments are provided to illustrate this method. Finally, for integrated system diagnosis and fault isolation, a fault signature table is constructed based on estimations of motor parameters, calculations of road SAT, and residuals of parity equations. This table can be used to detect and isolate considered electrical, mechanical, and sensor faults in the EPS system and simulation results are shown to verify the developed ideas.
机译:电动转向(EPS)是一种先进的转向系统,包括两个子系统:电气和机械子系统。 EPS系统不仅为驾驶员提供转向辅助,而且它们也是最近开发的主动安全功能的执行器,如车道保持和车道更换辅助。 EPS系统的某些组成部分的失败可能导致行走家庭情况和增加的保修费用。因此,为了提高EPS系统的可靠性,安全性和效率,故障检测,诊断和预后变得越来越重要。本文通过使用参数估计来确定通过基于模型的技术来确定EPS系统的故障检测,以确定EPS电机的电流电流参数。另外,通过监视从两种不同方法估计的自对准扭矩(SAT)的偏差,可以检测EPS机械参数的变化。可以将这种偏差的进展送入健康状态估计器,该估计能够指示健康状态和剩余的使用寿命。提供计算机仿真以及循环(HIL)实验以说明这种方法。最后,对于集成系统诊断和故障隔离,基于对电机参数,路径计算和奇偶校验方程的残差来构建故障签名表。该表可用于检测和隔离所认为EPS系统中的电气,机械和传感器故障,并显示仿真结果验证了开发的思路。

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