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Distributed MPC for Reconfigurable Architecture Systems via Alternating Direction Method of Multipliers

机译:通过乘法器的交替方向方法分布用于可重构架构系统的MPC

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摘要

This paper investigates the distributed model predictive control (MPC) problem of linear systems where the network topology is changeable by the way of inserting new subsystems, disconnecting existing subsystems, or merely modifying the couplings between different subsystems. To equip live systems with a quick response ability when modifying network topology, while keeping a satisfactory dynamic performance, a novel reconfiguration control scheme based on the alternating direction method of multipliers (ADMM) is presented. In this scheme, the local controllers directly influenced by the structure realignment are redesigned in the reconfiguration control. Meanwhile, by employing the powerful ADMM algorithm, the iterative formulas for solving the reconfigured optimization problem are obtained, which significantly accelerate the computation speed and ensure a timely output of the reconfigured optimal control response. Ultimately, the presented reconfiguration scheme is applied to the level control of a benchmark four-tank plant to illustrate its effectiveness and main characteristics.
机译:本文调查了通过插入新子系统,断开现有子系统的方式更加可变的线性系统的分布式模型预测控制(MPC)问题,或者仅在不同子系统之间修改耦合。为了在修改网络拓扑时提供快速响应能力的现场系统,在保持令人满意的动态性能的同时,提出了一种基于乘法器(ADMM)的交替方向方法的新型重配置控制方案。在该方案中,在重新配置控制中重新设计了由结构调整的本地控制器。同时,通过采用强大的ADMM算法,获得用于解决重新配置优化问题的迭代公式,这显着加速了计算速度并确保了重新配置的最佳控制响应的及时输出。最终,所提出的重新配置方案应用于基准四油箱工厂的水平控制,以说明其有效性和主要特征。

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