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LMI-based sliding mode observers for incipient faults detection in nonlinear system

机译:基于LMI的滑模观测器用于非线性系统的早期故障检测。

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This paper presents a diagnosis scheme based on a linear matrix inequality (LMI) algorithm for incipient faults in a nonlinear system class with unknown input disturbances. First, the nonlinear system is transformed into two subsystems, one of which is unrelated to the disturbances. Second, for the subsystem that is free from disturbances, a Luenberger observer is constructed; a sliding mode observer is then constructed for the subsystem which is subjected to disturbances, so that the effect of the unknown input disturbances is eliminated. Together, the entire system achieves both robustness to disturbances and sensitivity to incipient faults. Finally, the effectiveness and feasibility of the proposed method are verified through a numerical example using a single-link robotic arm.
机译:本文提出了一种基于线性矩阵不等式(LMI)算法的诊断方案,该方案针对输入干扰未知的非线性系统类别中的初始故障。首先,将非线性系统转换为两个子系统,其中一个与扰动无关。其次,对于不受干扰的子系统,构造了一个Luenberger观测器。然后为受到干扰的子系统构造一个滑模观察器,从而消除了未知输入干扰的影响。整个系统共同实现了对干扰的鲁棒性和对初期故障的敏感性。最后,通过单链机械臂的数值算例验证了该方法的有效性和可行性。

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