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首页> 外文期刊>IEEE transactions on circuits and systems . I , Regular papers >Adaptive Event-Triggered SMC for Stochastic Switching Systems With Semi-Markov Process and Application to Boost Converter Circuit Model
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Adaptive Event-Triggered SMC for Stochastic Switching Systems With Semi-Markov Process and Application to Boost Converter Circuit Model

机译:具有半马尔可夫工艺的随机交换系统的自适应事件触发SMC,并应用于升压转换电路模型

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In this article, the sliding mode control (SMC) design is studied for a class of stochastic switching systems subject to semi-Markov process via an adaptive event-triggered mechanism. Network-induced communication constraints, semi-Markov switching parameters, and uncertain parameters are considered in a unified framework for the SMC design. Due to the constraint of measuring transducers, the system states always appear with unmeasurable characteristic. Compared with the traditional event-triggered mechanism, the adaptive event-triggered mechanism can effectively reduce the number of triggering than the static event-triggered mechanism. During the data transmission of network communication systems, network-induced delays are characterized from the event trigger to the zero-order holder. The aim of this work is to design an appropriate SMC law based on an adaptive event-triggered communication scheme such that the resulting closed-loop system could realize stochastic stability and reduce communication burden. By introducing the stochastic semi-Markov Lyapunov functional, sojourn-time-dependent sufficient conditions are established for stochastic stability. Then, a suitable SMC law is designed such that the system state can be driven onto the specified sliding surface in a finite-time region. Finally, the simulation study on boost converter circuit model (BCCM) illustrates the effectiveness of the theoretical findings.
机译:在本文中,通过自适应事件触发机制研究了一类经过半马尔可夫过程的随机开关系统进行了滑模控制(SMC)设计。在SMC设计的统一框架中考虑了网络诱导的通信约束,半马尔可夫切换参数和不确定参数。由于测量传感器的约束,系统状态总是出现不可衡量的特征。与传统的事件触发机制相比,自适应事件触发机制可以有效地降低触发的触发数而不是静态事件触发的机制。在网络通信系统的数据传输期间,从事件触发到零阶保持器的表征网络感应延迟。这项工作的目的是根据自适应事件触发的通信方案设计适当的SMC定律,使得所得到的闭环系统可以实现随机稳定性并降低通信负担。通过引入随机半马尔可夫Lyapunov功能,为随机稳定性建立了逐渐依赖的充分条件。然后,设计合适的SMC定律,使得系统状态可以在有限时间区域中被驱动到指定的滑动表面上。最后,升压转换器电路模型(BCCM)的仿真研究说明了理论发现的有效性。

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