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Output feedback robust distributed model predictive control for parallel systems in process networks with competitive characteristics

机译:输出反馈具有竞争特性的过程网络中并行系统的强大分布式模型预测控制

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The parallel structure is one of the basic system architectures found in process networks. This paper formulates control strategies for such parallel systems when the states are unmeasured. The competitive coupling and competitive constraints are addressed in the control design. A distributed buffer and pre-estimator are proposed to solve problems relating to coupling and timely communication whilst a distributed moving horizon estimator is employed to further improve the estimation accuracy in the presence of the constraints. An output feedback robust distributed model predictive control algorithm is then developed for such parallel systems. The Lyapunov method is used for the theoretical analysis which produces tractable linear matrix inequalities (LMI). Simulations and experimental results are provided to validate the effectiveness of the proposed approach.
机译:并行结构是过程网络中的基本系统架构之一。 本文在未测量状态时为这种平行系统制定控制策略。 竞争耦合和竞争约束是在控制设计中解决的。 提出了一种分布式缓冲器和预估计器来解决与耦合和及时通信有关的问题,同时采用分布式移动地平线估计器来进一步提高约束存在的估计精度。 然后为这种并行系统开发了输出反馈鲁棒分布式模型预测控制算法。 Lyapunov方法用于理论分析,其产生易于直线矩阵不等式(LMI)。 提供模拟和实验结果,以验证提出的方法的有效性。

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