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A Bi-level Approach to MPC for Switching Nonlinear Systems

机译:用于切换非线性系统的MPC的双级方法

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In this paper, a nonlinear model predictive control scheme for switching dynamical systems is presented. The controller comprises of two layers of optimization. The upper layer is based on the embedding transformation technique, hence it does not require prior knowledge of the switching sequence. In particular, it provides the optimal relaxed switching sequence together with the optimal regulating inputs and the corresponding trajectories of the states. Within the lower layer, the integrality constraints are restored and a switching solution is recomputed to minimize the error with respect to the trajectories given from the upper-level optimization. The scheme is presented and the bounds of the integer approximation errors are evaluated together with brief recursive feasibility analysis. Simulation results of a tracking and an economics optimizing nonlinear MPC for a supermarket refrigerator system show the applicability and efficiency of the proposed approach.
机译:本文介绍了一种用于切换动力系统的非线性模型预测控制方案。控制器包括两层优化。上层基于嵌入式转换技术,因此它不需要先前了解切换序列。特别地,它与最佳调节输入和状态的相应轨迹一起提供最佳的松弛切换序列。在下层内,还原积分约束,并重新计算切换解决方案以最小化相对于从上层优化给出的轨迹的误差。提出了该方案,并且随着短暂的递归可行性分析,将整数近似误差的界限进行评估。用于超市冰箱系统的非线性MPC的跟踪和经济学的仿真结果表明了所提出的方法的适用性和效率。

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