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首页> 外文期刊>Circuits and Systems II: Express Briefs, IEEE Transactions on >Robust Hybrid Control Design for Stochastic Markovian Jump System via Fault Alarm Approach
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Robust Hybrid Control Design for Stochastic Markovian Jump System via Fault Alarm Approach

机译:故障报警方法随机马尔维亚跳跃系统的鲁棒混合控制设计

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In this brief, the fault alarm-based hybrid control is developed for a class of stochastic Markovian jump systems subject to actuator faults, disturbances and time-varying delay. The main objective of this brief is to design a reliable state feedback controller such that the resulting closed-loop system is stochastically stable under a prescribed H-infinity performance level gamma > 0 in the presence of actuator faults. More precisely, an alarm signal is considered by designing suitable threshold to avoid false alarm, (i.e.,) to invoke the reliable controller and remove the estimated value of actuator failure. Based on the Lyapunov stability theory and the extended Wirtinger-based single integral inequality, a novel set of sufficient criteria is constructed in the form of linear matrix inequality (LMI) constraints to ensure the stochastic stability of the addressed system. Further, the control design parameters are calculated by solving the developed LMI constraints. Finally, two numerical examples including RLC series circuit with simulation results is provided to illustrate the effectiveness of the proposed control scheme.
机译:在此简介中,为一类致动器故障,干扰和时变延迟进行的一类随机马尔可夫跳跃系统开发了基于故障报警的混合控制。本简要的主要目的是设计可靠的状态反馈控制器,使得在执行器故障存在下,所得闭环系统在规定的H-Infinity性能水平伽马> 0下是随机稳定的。更确切地说,通过设计合适的阈值来考虑警报信号以避免误报,(即)来调用可靠的控制器并去除执行器故障的估计值。基于Lyapunov稳定性理论和基于延伸的丝杠单积分不等式,以线性矩阵不等式(LMI)约束的形式构建了一种新的足够标准,以确保寻址系统的随机稳定性。此外,通过求解开发的LMI约束来计算控制设计参数。最后,提供了两种数值示例,包括具有仿真结果的RLC系列电路,以说明所提出的控制方案的有效性。

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