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Stability analysis of a multi-model predictive control algorithm with application to control of chemical reactors

机译:多模型预测控制算法的稳定性分析及其在化学反应器控制中的应用

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We study a stabilizing multi-model predictive control strategy for controlling nonlinear process at different operating conditions. The control algorithm is a receding horizon scheme with a quasi-infinite horizon objective function that has finite and infinite horizon cost components. The finite horizon cost consists of free input variables that direct the system towards a terminal region which contains the desired operating point. The infinite horizon cost has an upper bound and steers the system to the desired operating point. The system is represented by a sequence of piecewise linear models. Based on the condition of the system states, the sequence of piecewise linear models is updated and the controller's objective function switches form quasi-infinite to infinite horizon objective function. This results in a hybrid control structure. A recent approach in the analysis of hybrid systems that uses multiple Lyapunov functions is employed in the stability analysis of the closed-loop system. The stabilizing hybrid control strategy is illustrated on two examples and their closed-loop stability properties are studied. (c) 2005 Elsevier Ltd. All rights reserved.
机译:我们研究了一种稳定的多模型预测控制策略,用于控制不同工况下的非线性过程。该控制算法是具有准无限地平线目标函数的后退地平线方案,该目标函数具有有限和无限的地平线成本成分。有限水平成本由自由输入变量组成,这些自由输入变量将系统引向包含所需工作点的终端区域。无限远景成本具有上限,并将系统转向所需的工作点。该系统由一系列分段线性模型表示。根据系统状态的条件,更新分段线性模型的序列,并且控制器的目标函数开关从准无限到无限水平目标函数。这导致了混合控制结构。在使用多个Lyapunov函数的混合系统分析中,最近的一种方法被用于闭环系统的稳定性分析中。在两个例子中说明了稳定的混合控制策略,并研究了它们的闭环稳定性。 (c)2005 Elsevier Ltd.保留所有权利。

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