Robust nonlinear observer design for actuator fault detection in diesel engines

B. Boulkroune, I. Djemili, A. Aitouche, V. Cocquempot
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引用次数: 18

Abstract

Abstract This paper is concerned with actuator fault detection in nonlinear systems in the presence of disturbances. A nonlinear unknown input observer is designed and the output estimation error is used as a residual for fault detection. To deal with the problem of high Lipschitz constants, a modified mean-value theorem is used to express the nonlinear error dynamics as a convex combination of known matrices with time-varying coefficients. Moreover, the disturbance attenuation is performed using a modified H∞ criterion. A sufficient condition for the existence of an unknown input observer is obtained using a linear matrix inequality formula, and the observer gains are obtained by solving the corresponding set of inequalities. The advantages of the proposed method are that no a priori assumption on the unknown input is required and that it can be applied to a large class of nonlinear systems. Performances of the proposed approach are shown through the application to a diesel engine model.
柴油机作动器故障检测的鲁棒非线性观测器设计
摘要研究了存在扰动的非线性系统中的执行器故障检测问题。设计了非线性未知输入观测器,利用输出估计误差作为残差进行故障检测。为了处理高Lipschitz常数问题,采用修正中值定理将非线性误差动力学表示为具有时变系数的已知矩阵的凸组合。此外,采用改进的H∞准则进行扰动衰减。利用线性矩阵不等式公式得到未知输入观测器存在的充分条件,并通过求解相应的不等式集得到观测器增益。该方法的优点是不需要对未知输入进行先验假设,并且可以应用于大量的非线性系统。通过对某柴油机模型的应用,验证了该方法的有效性。
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