Robust fault detection for vehicle lateral dynamics

Sebastien Varrier, D. Koenig, J. Martínez
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引用次数: 22

Abstract

This paper investigates the problem of fault detection and isolation (FDI) for vehicle lateral dynamics. The system under consideration is a Linear Parameter Varying (LPV) model, where the scheduling parameter is related to the vehicle speed. The heart of the proposed approach relies in synthesizing robust residuals for some specified working speed. The robustness guaranties the validity between each working points. Synthesis of robust residuals is inspired from the well-known parity-space method but extended for uncertain systems. The final fault detector is reconstructed by switching from the different residuals according to the speed. An applicative illustration is presented to detect a sensor fault on a vehicle lateral dynamic system. The measurements have been provided by the MIPS laboratory in collaboration within the French INOVE project.
车辆横向动力学的鲁棒故障检测
研究了车辆横向动力学的故障检测与隔离问题。所考虑的系统是一个线性参数变化(LPV)模型,其中调度参数与车速有关。该方法的核心是在一定的工作速度下合成鲁棒残差。鲁棒性保证了各工作点之间的有效性。鲁棒残差的合成受到著名的奇偶空间方法的启发,并扩展到不确定系统。根据速度的不同,对残差进行切换,重构出最终的故障检测器。给出了车辆横向动力系统传感器故障检测的应用实例。这些测量由MIPS实验室在法国INOVE项目的合作下提供。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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