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Decentralized Control System Design under Uncertainty Using Mixed-Integer Optimization

机译:混合整数优化的不确定性分散控制系统设计

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Decentralized control system design comprises the selection of a suitable control structure and controller parameters. In this contribution, the optimal control structure and the optimal controller parameters are determined simultaneously using mixed-integer dynamic optimization (MIDO) under uncertainty, to account for nonlinear process dynamics and various disturbance scenarios. Application of the sigma point method is proposed in order to approximate the expectation and the variance of a chosen performance index with a minimum number of points to solve the MIDO problem under uncertainty. The proposed methodology is demonstrated with a benchmark problem of an inferential control for a reactive distillation column. The results are compared with established heuristic design methods and with previous deterministic approaches.
机译:分散控制系统设计包括选择合适的控制结构和控制器参数。在此贡献中,不确定性时使用混合整数动态优化(MIDO)同时确定了最优控制结构和最优控制器参数,以解决非线性过程动力学和各种干扰情况。为了解决不确定性情况下的MIDO问题,提出了σ点法的应用,以便用最少的点数近似估计所选性能指标的期望值和方差。以反应性蒸馏塔的推理控制的基准问题证明了所提出的方法。将结果与已建立的启发式设计方法和以前的确定性方法进行比较。

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