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Fault diagnosis based on adaptive observer for a class of non-linear systems with unknown parameters

机译:基于自适应观测器的一类未知参数非线性系统的故障诊断

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In this paper, the fault diagnosis problem for a class of non-linear systems with uncertainty which depends on states, inputs and unknown constant parameters is discussed. Under some geometric conditions, the system is transformed into two different subsystems. One is not affected by actuator faults, so a non-linear adaptive observer can be designed based on the assumption of the strictly positive realness (SPR). The other whose states can be measured is affected by the faults. Actuator fault diagnosis is based on estimations of both the state and the unknown parameters with good accuracy. Discussions on release of SPR requirement and extension to the sensor fault case are also made. Finally, two examples are given in order to illustrate the applicability of the proposed methods for actuator fault diagnosis and sensor fault diagnosis respectively. [References: 32]
机译:本文讨论了一类不确定的非线性系统的故障诊断问题,该系统的不确定性取决于状态,输入和未知的常数参数。在某些几何条件下,系统被转换为两个不同的子系统。一个不受执行器故障的影响,因此可以基于严格正实性(SPR)的假设来设计非线性自适应观测器。可以测量其状态的另一个受故障影响。执行器故障诊断基于状态和未知参数的估计,且准确性很高。还讨论了释放SPR要求和扩展到传感器故障的情况。最后,给出两个例子以说明所提出的方法分别用于执行器故障诊断和传感器故障诊断的适用性。 [参考:32]

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