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Optimal Control and Scheduling of Switched Systems

机译:交换系统的最优控制与调度

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This technical note addresses optimal control and scheduling (controlled switching) of discrete-time switched linear systems. A receding-horizon control and scheduling (RHCS) problem is introduced and solved by dynamic programming, leading to a combinatorial optimization problem with exponential complexity. By relaxed dynamic programming, complexity is reduced while relaxing optimality within prespecified bounds. The resulting RHCS strategy is expressed explicitly as a piecewise linear state feedback control law defined over regions implied by quadratic forms. Closed-loop stability is not guaranteed inherently for the RHCS strategy. Therefore, a posteriori stability criteria based on piecewise quadratic Lyapunov functions are proposed. Finally, a region-reachability criterion is presented.
机译:本技术说明介绍了离散时间切换线性系统的最佳控制和调度(受控切换)。引入后向水平控制与调度(RHCS)问题并通过动态编程加以解决,从而导致了具有指数复杂性的组合优化问题。通过放松的动态编程,可以降低复杂性,同时在预定范围内放松最优性。最终的RHCS策略明确表示为分段线性状态反馈控制律,该律定义在二次形式所隐含的区域上。 RHCS策略本身无法保证闭环稳定性。因此,提出了基于分段二次Lyapunov函数的后验稳定性准则。最后,提出了区域可达性标准。

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