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Fault detection in finite frequency domains for multi-delay uncertain systems with application to ground vehicle

机译:多时延不确定系统有限频域故障检测及其在地面车辆上的应用

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摘要

This paper is concerned with the actuator fault detection (FD) problem in finite frequency domains for multi-delay systems subject to time-varying affine uncertainties. Because of the existence of time-varying uncertain parameters, the generalized Kalman-Yakubovic-Popov lemma based finite frequency FD filter design approaches cannot be applied. To tackle this difficulty, a new delay-dependent bounded real lemma (BRL) is established by using Lyapunov theory and Parseval's theorem to characterize the finite frequency disturbance attenuation and fault sensitivity performances. Moreover, via the obtained BRL, convex FD filter design conditions are then derived by constructing a hyperplane tangent. Finally, the effectiveness and advantages of the proposed FD method are illustrated through a simulation example on a ground vehicle. Copyright (C) 2014 John Wiley & Sons, Ltd.
机译:本文涉及时滞仿射不确定性的多时滞系统在有限频域中的执行器故障检测(FD)问题。由于存在随时间变化的不确定参数,因此无法应用基于广义Kalman-Yakubovic-Popov引理的有限频率FD滤波器设计方法。为解决这一难题,利用李雅普诺夫理论和Parseval定理建立了一种新的依赖于时延的有界实数引理(BRL),以表征有限频率干扰的衰减和故障敏感性。此外,通过获得的BRL,然后通过构造超平面切线来得出凸FD滤波器设计条件。最后,通过在地面车辆上的仿真实例说明了所提出的FD方法的有效性和优势。版权所有(C)2014 John Wiley&Sons,Ltd.

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