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Periodic switching strategies for an isoperimetric control problem with application to nonlinear chemical reactions

机译:等量控制问题的周期切换策略及其在非线性化学反应中的应用

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This paper deals with an isoperimetric optimal control problem for nonlinear control-affine systems with periodic boundary conditions. As it was shown previously, the candidates for optimal controls for this problem can be obtained within the class of bang-bang input functions. We consider a parametrization of these inputs in terms of switching times. The control-affine system under consideration is transformed into a driftless system by assuming that the controls possess properties of a partition of unity. Then the problem of constructing periodic trajectories is studied analytically by applying the Fliess series expansion over a small time horizon. We propose analytical results concerning the relation between the boundary conditions and switching parameters for an arbitrary number of switchings. These analytical results are applied to a mathematical model of non-isothermal chemical reactions. It is shown that the proposed control strategies can be exploited to improve the reaction performance in comparison to the steady-state operation mode. (C) 2018 Elsevier Inc. All rights reserved.
机译:本文研究了带有周期边界条件的非线性仿射系统的等长最优控制问题。如先前所示,可以在bang-bang输入函数类中获得针对此问题的最佳控制的候选对象。我们考虑在切换时间方面对这些输入进行参数化。通过假设控件具有统一分区的属性,可以将所考虑的仿射系统转化为无漂移系统。然后通过在较小的时间范围内应用Fliess级数展开来分析地研究构造周期性轨迹的问题。我们提出关于边界条件和任意开关次数的开关参数之间关系的分析结果。这些分析结果被应用于非等温化学反应的数学模型。结果表明,与稳态运行方式相比,所提出的控制策略可以提高反应性能。 (C)2018 Elsevier Inc.保留所有权利。

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