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Controller Complexity Reduction for Piecewise Affine Systems Through Safe Region Elimination

机译:通过安全区域消除,控制器复杂性减少分段仿射系统

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摘要

We consider the class of piecewise affine optimal state feedback control laws applied to discrete-time piecewise affine systems, motivated by recent work on the computation of closed-form MPC controllers. The storage demand and complexity of these optimal closed-form solutions limit their applicability in most real-life situations. In this paper we present a novel algorithm to a posteriori reduce the storage demand and complexity of the closed-form controller without losing closed-loop stability or all time feasibility while guaranteeing a bounded performance decay compared to the optimal solution. The algorithm combines simple polyhedral manipulations with (multi-parametric) linear programming and the effectiveness of the algorithm is demonstrated on a large numerical example.
机译:我们考虑对应用于离散时间分段仿射系统的分段仿射最优状态反馈控制规律,其最近的封闭式MPC控制器计算的工作。这些最佳闭合解决方案的存储需求和复杂性限制了它们在大多数现实生活中的适用性。在本文中,我们将一种新颖的算法在后验中降低了闭合控制器的存储需求和复杂性,而不会失去闭环稳定性或所有时间可行性,同时保证与最佳解决方案相比的有界性能衰减。该算法将简单的多面体操纵与(多参数)线性编程结合,并在大型数值示例上说明了算法的有效性。

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