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首页> 外文期刊>Automatic Control, IEEE Transactions on >Optimal Stationary Dynamic Output-Feedback Controllers for Discrete-Time Linear Systems With Markovian Jumping Parameters and Additive White Noise Perturbations
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Optimal Stationary Dynamic Output-Feedback Controllers for Discrete-Time Linear Systems With Markovian Jumping Parameters and Additive White Noise Perturbations

机译:具有马尔可夫跳跃参数和加性白噪声摄动的离散线性系统的最优平稳动态输出反馈控制器

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摘要

This paper addresses stationary dynamic output-feedback control of discrete-time Markovian jumping linear systems (MJLS). A rather general setup is adopted, with indirect and noisy output measurements, infinite time horizon, and not necessarily ergodic Markov chains. The class of admissible controllers consists of all stabilizing systems, dynamic or memoryless, with arbitrary dimension. The quality of stabilization achieved by an admissible controller is measured by a performance criterion described by a long run average cost, under some standard conditions. The optimal controller can be computed off-line resting on two sets of Riccati equations and it only requires the storage of 4N matrices where N is the cardinality of the Markov state space. We present an example of a quad-rotor system to illustrate the results and compare the performance of three different control schemes with the proposed one, indicating that it is an interesting, simple alternative for controlling MJLS. Although the systems under consideration are subject to random perturbations, the proof of the main result is based on arguments typical of deterministic systems.
机译:本文讨论了离散时间马尔可夫跳跃线性系统(MJLS)的静态动态输出反馈控制。采用了一种相当通用的设置,具有间接和嘈杂的输出测量,无限的时间范围以及不一定遍历的马尔可夫链。允许的控制器类别包括所有稳定系统,动态或无记忆,具有任意尺寸。在某些标准条件下,允许的控制器所达到的稳定质量由性能标准(由长期平均成本所描述)来衡量。可以根据两组Riccati方程离线计算最优控制器,它仅需要存储4N个矩阵,其中N是马尔可夫状态空间的基数。我们以一个四转子系统为例来说明结果,并将三种不同的控制方案的性能与所提出的方案进行比较,表明这是控制MJLS的有趣,简单的替代方案。尽管所考虑的系统易受随机扰动的影响,但主要结果的证明是基于确定性系统的典型论点。

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