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DYNAMIC OPTIMIZATION FOR SWITCHED TIME-DELAY SYSTEMS WITH STATE-DEPENDENT SWITCHING CONDITIONS

机译:具有状态相关交换条件的交换式时滞系统动态优化

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This paper considers a dynamic optimization problem for a class of switched systems characterized by two key attributes: (i) the switching mechanism is invoked automatically when the state variables satisfy certain switching conditions; and (ii) the subsystem dynamics involve time-delays in the state variables. The decision variables in the problem, which must be selected optimally to minimize system cost, consist of a set of time-invariant system parameters in the initial state functions. To solve the dynamic optimization problem, we first show that the partial derivatives of the system state with respect to the system parameters can be expressed in terms of the solution of a set of variational switched systems. Then, on the basis of this result, we develop a gradient-based optimization algorithm to determine the optimal parameter values. Finally, we validate the proposed algorithm by solving an example problem arising in the production of 1,3-propanediol.
机译:本文考虑了一个动态优化问题,适用于由两个关键属性为特征的一类交换系统:(i)当状态变量满足某些切换条件时自动调用切换机制; (ii)子系统动态涉及状态变量的时滞。 问题中的决策变量必须最佳选择以最大限度地选择系统成本,包括在初始状态函数中的一组时间不变系统参数。 为了解决动态优化问题,首先表明可以以一组变分切换系统的解决方案来表示系统状态的系统状态的部分导数。 然后,在此结果的基础上,我们开发了一种基于梯度的优化算法来确定最佳参数值。 最后,我们通过求解在1,3-丙二醇的生产中产生的示例问题来验证所提出的算法。

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