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Dynamic Self-Triggered Controller Codesign for Markov Jump Systems

机译:Markov Jump系统的动态自触发控制器代码

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This article proposes a resource-aware triggering-based dynamic controller codesign scheme for Markov jump systems (MJSs) to fulfill both disturbance rejection and computational resources saving goals. Specifically, a self-trigger strategy is presented for precomputing the next execution time for state measurement, executing the controller, and updating the actuators using the current sampled information. To achieve a desired system performance and reduce the resource occupation, the self-triggering parameters and the gains of state feedback controller are codesigned. Moreover, a dynamic triggering technique is employed to improve the system performance by adapting the trigger coefficients to the different subsystems of MJSs. The effectiveness of the proposed method is demonstrated via two examples.
机译:本文提出了一种用于马尔可夫跳转系统(MJSS)的资源感知触发的动态控制器代码方案,以满足干扰抑制和计算资源的节省目标。具体地,提出了一种自触发策略,用于预先计算状态测量的下一个执行时间,执行控制器,以及使用当前采样信息更新致动器。为了实现所需的系统性能并降低资源职业,自触发参数和状态反馈控制器的增益是代号的。此外,采用动态触发技术来通过将触发系数适应MJSS的不同子系统来改善系统性能。通过两个实例证明了所提出的方法的有效性。

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