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A novel adaptive switching function on fault tolerable sliding mode control for uncertain stochastic systems

机译:不确定随机系统容错滑模控制的新型自适应切换功能

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A novel switching function based on an optimization strategy for the sliding mode control (SMC) method has been provided for uncertain stochastic systems subject to actuator degradation such that the closed-loop system is globally asymptotically stable with probability one. In the previous researches the focus on sliding surface has been on proportional or proportional-integral function of states. In this research, from a degree of freedom that depends on designer choice is used to meet certain objectives. In the design of the switching function, there is a parameter which the designer can regulate for specified objectives. A sliding-mode controller is synthesized to ensure the reachability of the specified switching surface, despite actuator degradation and uncertainties. Finally, the simulation results demonstrate the effectiveness of the proposed method.
机译:已经为滑模控制(SMC)方法的优化策略提供了一种新颖的切换功能,该方法针对执行器退化的不确定随机系统提供了闭环系统,其全局渐近稳定的概率为1。在先前的研究中,对滑动表面的关注一直集中在状态的比例或比例积分功能上。在这项研究中,取决于设计师选择的自由度可用于实现某些目标。在开关功能的设计中,有一个参数可供设计人员针对特定目标进行调节。合成了一个滑模控制器,以确保指定开关表面的可达性,尽管执行器性能下降且不确定。最后,仿真结果证明了该方法的有效性。

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