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Robust H∞ fault-tolerant control for nonlinear networked control systems under event-triggered sparse data transmission

机译:事件触发的稀疏数据传输下非线性网络控制系统的鲁棒H∞容错控制

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Based on discrete event-triggered communication scheme (DETCS) with sparse transmission characteristic and Takagi-Sugeno fuzzy method, the problem of robust H fault-tolerant event-triggered control is investigated for nonlinear networked control systems(NNCS) with actuator failure and actuator saturation. Firstly, a new fuzzy closed-loop fault model with actuator saturation is established under the background of sparse data transmission. Secondly, based on Lyapunov-Krasovskii stability theory, a sufficient condition is derived for NNCS with α-safety degree and disturbance rejection performance, which is the contractively invariant set of fault-tolerance with α-safety degree. And the integrated method between robust H fault-tolerant controller and event-triggered matrices is given out by linear matrix inequality (LMI) under event-triggered sparse data transmission. Lastly, the simulation example demonstrates the effectiveness of the method proposed. Furthermore, the study of compatibility analysis among disturbance rejection level, safety degree and network communication resource occupancy is also presented.
机译:基于具有稀疏传输特性的离散事件触发通信方案(DETCS)和Takagi-Sugeno模糊方法,研究了具有执行器故障和执行器饱和的非线性网络控制系统(NNCS)的鲁棒H容错事件触发控制问题。 。首先,在稀疏数据传输的背景下,建立了一个具有执行器饱和的模糊闭环故障模型。其次,基于Lyapunov-Krasovskii稳定性理论,推导了具有α安全度和扰动抑制性能的NNCS的充分条件,这是具有α安全度的容错性的压缩不变集。在事件触发的稀疏数据传输下,通过线性矩阵不等式(LMI)给出了鲁棒H容错控制器与事件触发矩阵的集成方法。最后,通过仿真实例验证了所提方法的有效性。此外,还对干扰抑制等级,安全度和网络通信资源占用之间的兼容性分析进行了研究。

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