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Fault detection and diagnosis based on parameter set estimation

机译:基于参数集估计的故障检测与诊断

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摘要

In this study, a fault detection and diagnosis strategy is proposed for the supervision of linearly parametrisable, time-invariant systems subject to abrupt parameter variations, relying on a variation of a set membership identification (SMI) approach. Based on the input??output measurements and the a priori knowledge of the noise bound, the SMI computes a feasible ellipsoidal and its supporting orthotopic parameter set, within which the nominal parameter vector resides. A fault is detected at the time instant when a hyperstrip generated from the measurement data and the noise bound does not intersect with the ellipsoid computed at the previous time instant, or when there is no intersection of the supporting orthotopes. The conditions under which the occurrence of a fault is detected followed by a seamless update of the ellipsoidal set are provided. In the sequel, the fault isolation procedure is accomplished through the computation of the projections of the certainty parameter sets, which contain the new nominal parameter vector. Finally, the fault diagnosis continues with the determination of the size and the type of parameter variation. Simulations studies are used to verify the efficiency of the suggested strategy for the case of multiple faults in a micro-electrostatic actuator.
机译:在这项研究中,提出了一种故障检测和诊断策略,该方法用于监视线性参数化,时不变的系统,该系统依赖于一组成员身份标识(SMI)方法的变化,该系统具有突然的参数变化。基于输入输出测量和噪声界限的先验知识,SMI计算出可行的椭圆形及其支持的原位参数集,标称参数向量位于其中。当从测量数据生成的超条带和噪声边界未与前一时刻计算的椭球相交时,或者在没有支撑正交原点相交时,即刻检测到故障。提供了检测到故障发生并随后无缝更新椭圆集的条件。在续篇中,通过计算确定性参数集的投影来完成故障隔离过程,确定性参数集包含新的名义参数向量。最后,通过确定参数变化的大小和类型继续进行故障诊断。仿真研究用于验证微静电执行器中多个故障情况下所建议策略的效率。

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