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Optimal control of hybrid dynamical systems with the maximum principle: application to a nonlinear chemical process

机译:具有最大原理的混合动力系统的最优控制:在非线性化学过程中的应用

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Chemical products manufacturing must consider sequences which lead them from an initial phase to a final one. In each phase the dynamic evolutions in the process are continuous. This paper presents a new method that minimizes the overall operating time to obtain the desired products, with respect to the constraints on the continuous variables. It is based on the Pontryagin's maximum principle extended to discrete controlled hybrid dynamical systems. It is illustrated using a nonlinear chemical process.
机译:化工产品制造必须考虑将其从初始阶段引导到最终阶段的顺序。在每个阶段,过程中的动态演变都是连续的。本文针对连续变量的约束条件提出了一种新方法,该方法可最大程度地缩短获得所需产品所需的总操作时间。它基于Pontryagin的最大原理,扩展到离散控制的混合动力系统。使用非线性化学过程对其进行了说明。

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