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首页> 外文期刊>IEEE Transactions on Fuzzy Systems >Fault Detection for Fuzzy Semi-Markov Jump Systems Based on Interval Type-2 Fuzzy Approach
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Fault Detection for Fuzzy Semi-Markov Jump Systems Based on Interval Type-2 Fuzzy Approach

机译:基于间隔类型-2模糊方法的模糊半马尔可夫跳跃系统故障检测

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This article studies the fault detection problem for continuous-time fuzzy semi-Markov jump systems (FSMJSs) by employing an interval type-2 (IT2) fuzzy approach. First, the continuous-time FSMJSs model is designed and the parameter uncertainty is addressed by the IT2 fuzzy approach, where the characteristic of sensor saturation is taken into account in the control system. Second, the IT2 fuzzy semi-Markov mode-dependent filter is constructed, which is employed to deal with the fault detection problem. Then, by using the Lyapunov theory, it can be guaranteed that the constructed fault detection model based on this filter and IT2 FSMJSs is stochastically stable with H8 performance. Moreover, the quantization strategy is applied to the fault detection plant to dispose of the problem of limited network bandwidth. Compared with the existing literature, the differences mainly lie in two aspects, one is that the IT2 fuzzy method is utilized for FSMJSs to tackle the parameter uncertainty of system, and the other is to detect the fault signal of IT2 FSMJSs by using the fault detection system that is constructed based on the IT2 fuzzy semi-Markovmode-dependent filter and IT2 FSMJSs. Finally, two simulation examples are provided to illustrate the effectiveness and the usefulness of the proposed theoretical method.
机译:本文通过采用间隔类型-2(IT2)模糊方法来研究连续时间模糊半马尔可夫跳转系统(FSMJS)的故障检测问题。首先,设计连续时间FSMJSS模型,IT2模糊方法解决了参数不确定性,其中在控制系统中考虑了传感器饱和度的特性。其次,构造了IT2模糊半标率模式相关滤波器,用于处理故障检测问题。然后,通过使用Lyapunov理论,可以保证基于该滤波器和IT2 FSMJSS的构建故障检测模型随着H8性能而随机稳定。此外,量化策略应用于故障检测设备,以处理有限网络带宽的问题。与现有文献相比,差异主要在两个方面,一个是IT2模糊方法用于FSMJSS来解决系统的参数不确定性,另一个是使用故障检测来检测IT2 FSMJS的故障信号基于IT2模糊半MarkovMode依赖滤波器和IT2 FSMJS构建的系统。最后,提供了两个模拟实施例以说明所提出的理论方法的有效性和有用性。

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