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Fault-Tolerant Sliding-Mode-Observer Synthesis of Markovian Jump Systems Using Quantized Measurements

机译:马尔可夫跳跃系统的容错滑模观测器综合

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This paper investigates the design problem of sliding mode observer (SMO) using quantized measurements for a class of Markovian jump systems against actuator faults. Such a problem arises in modern networked-based digital systems, where data have to be transmitted and exchanged over a digital communication channel. In this paper, a new descriptor SMO approach using quantized signals is presented, in which a discontinuous input is synthesized to reject actuator faults by an offline static compensation of quantization effects. It is revealed that on the density of a logarithmic quantizer is 1/3, under which the quantization effects could be compensated completely by using the SMO approach. Based on the proposed observer method, the asymptotical estimations of state vector and quantization errors can be obtained simultaneously. Finally, an example of a linearized model of an F-404 aircraft engine system is included to show the effectiveness of the presented observer design method.
机译:本文针对一类针对执行器故障的马尔可夫跳跃系统,使用量化测量方法研究了滑模观测器(SMO)的设计问题。在现代的基于网络的数字系统中出现了这样的问题,其中必须在数字通信信道上传输和交换数据。在本文中,提出了一种新的使用量化信号的描述符SMO方法,其中合成了一个不连续的输入,以通过离线量化效果的静态补偿来拒绝执行器故障。结果表明,对数量化器的密度为1/3,使用SMO方法可以完全补偿量化效果。基于提出的观测器方法,可以同时获得状态向量和量化误差的渐近估计。最后,包括一个F-404飞机发动机系统线性模型的示例,以显示所提出的观察者设计方法的有效性。

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