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Fault detection of a sandwich system with dead-zone based on robust observer

机译:基于鲁棒观测器的带死区的三明治系统故障检测

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摘要

Non-smooth sandwich systems with dead-zone widely exist in the real engineering applications. For accurately detecting its faults, a novel robust observer has been proposed in this paper. With the consideration of the model uncertainties, disturbances, and switching error which specially belongs to the system, the so-called general disturbance is defined. After that, the conventional dynamic robust observer design method can be applied to the system. Then, for saving the computing time and effectively reducing the effect of the disturbances to the residual, the main frequencies of the disturbances have been identified by the spectrum analysis of the residual created by the conventional observer and the zeros assignment methodology has been applied to get one feedback matrix of the robust observer. Finally, the rest of the feedback matrices of the robust observer can be obtained by solving an optimal problem with H-infinity,H-F/H--,H-F as the minimizing object. For verifying the effectiveness of this novel robust observer, the comparison between the proposed robust non-smooth scheme and the conventional method has been made. The final results show that the proposed robust fault detection approach can detect the actuator and sensor faults of the system more accurately and timely with a lower missing and false alarm rates comparing with the conventional one. (C) 2016 Elsevier B.V. All rights reserved.
机译:在实际工程应用中,广泛存在具有死区的非光滑三明治系统。为了准确检测其故障,本文提出了一种新颖的鲁棒观测器。考虑到模型不确定性,干扰和开关误差,这些误差特别属于系统,因此定义了所谓的一般干扰。之后,可以将常规的动态鲁棒观测器设计方法应用于该系统。然后,为了节省计算时间并有效减少干扰对残差的影响,通过对常规观测器创建的残差进行频谱分析,确定了干扰的主要频率,并采用了零分配方法获得鲁棒观察者的一个反馈矩阵。最后,通过求解以H-无穷大,H-F / H-,H-F为最小对象的最优问题,可以获得鲁棒观测器的其余反馈矩阵。为了验证这种新颖的鲁棒观测器的有效性,已对建议的鲁棒非光滑方案与常规方法进行了比较。最终结果表明,与传统方法相比,所提出的鲁棒故障检测方法可以更准确,及时地检测出系统的执行器和传感器故障,并且漏失率和误报率更低。 (C)2016 Elsevier B.V.保留所有权利。

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