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Robust Fault Diagnosis Based on Nonlinear Model of Hydraulic Gauge Control System on Rolling Mill

机译:基于非线性模型的轧机液压系统鲁棒故障诊断

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摘要

A nonlinear model of a hydraulic automatic gauge control (AGC) system is established for fault detection and isolation (FDI). By analyzing the relationship between faults and load uncertainties, a decoupling subsystem has been derived using a differential geometric approach. An exponential gain observer has been designed based on the observable decoupling subsystem. Diagnosis residual signal is sensitive to designated faults and robust to load uncertainty. Two real data examples verify that the observer is stable and asymptotically convergent. The correctness and superiority are testified by actual data examples.
机译:建立了液压自动仪表控制(AGC)系统的非线性模型,用于故障检测和隔离(FDI)。通过分析故障和负载不确定性之间的关系,使用微分几何方法得出了一个去耦子系统。基于可观察的解耦子系统,设计了一个指数增益观测器。诊断残余信号对指定的故障很敏感,对负载不确定性也很强。两个真实的数据示例证明观察者是稳定的并且渐近收敛。实际数据证明了该方法的正确性和优越性。

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