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Network-based robust and reliable fuzzy-observer-based H#x221E; tracking control for fuzzy interconnected systems

机译:基于网络的鲁棒可靠的模糊互联系统H 跟踪控制

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This paper investigates the robust and reliable fuzzy-observer-based H∞ tracking control issue in NCSs for the fuzzy large-scale interconnected systems with time-delay, which are composed of a number of T-S fuzzy subsystems with interconnections. The premise variables of T-S systems depend on the state variable estimated by the fuzzy observer. Network-induced time delays and packet losses are addressed. Linear matrix inequalities (LMIs)-based conditions with some free variables are derived to guarantee the H∞ tracking performance not only when all control components are operating well, but also in the presence of some possible actuator failures. Moreover, the precise failure parameters of the actuators are not required, and the requirements are only the lower and upper bounds of failure parameters. Therefore, obtained results are less conservative. Finally, a simulation example is provided to illustrate the design procedure and its effectiveness.
机译:本文研究了具有多个时延的T-S模糊子系统,对具有时滞的模糊大规模互连系统在NCS中基于鲁棒和可靠的基于模糊观测器的H∞跟踪控制问题进行了研究。 T-S系统的前提变量取决于模糊观测器估计的状态变量。解决了网络引起的时间延迟和数据包丢失。推导带有一些自由变量的基于线性矩阵不等式(LMI)的条件,以确保H∞跟踪性能,不仅在所有控制组件都运行良好时,而且在执行器可能出现故障的情况下也是如此。而且,不需要致动器的精确故障参数,并且要求仅是故障参数的上限和下限。因此,获得的结果不太保守。最后,提供了一个仿真实例来说明设计过程及其有效性。

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