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Robustness diagrams based optimal design of run-to-run control subject to deterministic and stochastic disturbances

机译:基于鲁莽地图的鲁莽设计的运行控制,以确定性和随机扰动

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In this article, we present a robust optimal design methodology for run-to-run control to cope with batch processes subject to deterministic shifts of various magnitudes and stochastic disturbances with first order autoregressive moving average dynamics. A tradeoff performance index is developed in closed form to assess both transient and asymptotic properties of output quality in the presence of fixed metrology delays. The performance index can be easily minimized to find the unconstrained optimal design of a run to -run controller implemented by a second-order filter in the internal model control framework. Not only do such design results clearly reveal when and why the conventional exponentially weighted moving average controller is not the best choice, but they also indicate that the second-order filter would constitute the best controller structure and achieve superior performance. If the unconstrained design does not satisfy the inequality constraints on robust stability, a constrained optimal design is sought and several robustness diagrams are established to enclose optimal solutions of filter parameters subject to specified gain margins. With the aid of these diagrams, a convenient design procedure for metrology delays of zero and one is furnished to resolve difficulties in constrained optimization and identify rapidly the globally optimal design of the second-order filter. The design methodology is justified by simulated examples faced with a wide variety of deterministic and stochastic disturbances, assigned model mismatch, and different metrology delays. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在本文中,我们提出了一种强大的最佳设计方法,用于运行控制,以应对各种大幅度和随机扰动的确定性转变,以及具有一阶自回归移动平均动态的批量流程。权衡性能指数以封闭式表达开发,以评估固定计量延迟存在下产出质量的瞬态和渐近性质。可以很容易地最小化性能指数以找到由内部模型控制框架中的二阶滤波器实现的跑步控制器的无约束最佳设计。不仅可以做这种设计结果清楚地揭示了传统的指数加权移动平均控制器不是最佳选择的何时以及为什么,但它们也表明二阶滤波器将构成最佳控制器结构并实现优越的性能。如果不受约束的设计不满足稳健稳定性的不等式约束,则寻求受约束的最佳设计,并建立了几个稳健性图来封闭滤波器参数的最佳解决方案,该滤波器参数受到指定的增益边距。借助这些图表,提供了一个方便的测量延迟的设计过程,零和一个被提供以解决约束优化的困难,并迅速识别二阶滤波器的全球最佳设计。设计方法通过模拟示例面临着各种确定性和随机扰动,分配的模型不匹配和不同的计量延迟。 (c)2018年elestvier有限公司保留所有权利。

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