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首页> 外文期刊>IEEE Transactions on Automatic Control >An Indirect Method for Regular State-Constrained Optimal Control Problems in Flow Fields
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An Indirect Method for Regular State-Constrained Optimal Control Problems in Flow Fields

机译:流场中常规状态约束最优控制问题的间接方法

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摘要

This article concerns an indirect method to solve state-constrained optimal control problems. The dynamics of the controlled system is given by ordinary differential equations encompassing the effect of a steady flow field in which the moving object is immersed. The proposed method is based on the maximum principle in Gamkrelidze's form. At the core of the approach is a regularity hypothesis which entails the continuity of the measure Lagrange multiplier associated with the state constraint. This property plays key role in shaping a properly modified shooting method to solve the two-point boundary value problem resulting from the maximum principle. Illustrative applications to time optimal control problems are considered and results of numerical experiments are provided.
机译:本文涉及解决国家受限的最佳控制问题的间接方法。受控系统的动态由常规方程给出,包括稳定流场的稳定流场的效果。该方法基于Gamkrelidze形式的最大原则。在该方法的核心,是一个规律性假设,其需要与状态约束相关的测量拉格朗日乘数的连续性。此属性在整形一个正确修改的拍摄方法中扮演关键作用,以解决由最大原则产生的两点边值问题。考虑了时间最佳控制问题的说明性应用,并且提供了数值实验的结果。

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