On the Uniqueness of Solution to the Inverse Optimal Control Problem for the Hard-Constrained Minimum Principle-Based Method

IF 2.4 Q2 AUTOMATION & CONTROL SYSTEMS
Afreen Islam;Guido Herrmann;Joaquin Carrasco
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引用次数: 0

Abstract

In this letter, the hard-constrained minimum principle based method for solving the inverse optimal control (IOC) problem has been considered. Specifically, this letter investigates the kinds of closed-loop system trajectories, initial conditions and system dynamics for which a unique solution to the IOC problem can be obtained for this method. For this purpose, a matrix associated with the optimization problem involved in this IOC approach is tested for full rankness. It was found that for this method, in addition to initial conditions and types of closed-loop system trajectories, the open-loop system dynamics has an important role in determining if a unique solution to the IOC problem can be obtained. Rigorous mathematical and numerical analysis for different types of trajectories, initial conditions and system dynamics have been presented.
基于硬约束最小原则的逆最优控制问题解的唯一性
本文研究了求解逆最优控制问题的基于硬约束最小原则的方法。具体来说,本文研究了闭环系统轨迹、初始条件和系统动力学的类型,对于这些类型,可以用该方法获得IOC问题的唯一解。为此,对与此IOC方法中涉及的优化问题相关的矩阵进行全秩测试。研究发现,对于该方法,除了初始条件和闭环系统轨迹类型外,开环系统动力学对于确定是否能获得IOC问题的唯一解具有重要作用。对不同类型的轨迹、初始条件和系统动力学进行了严格的数学和数值分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
IEEE Control Systems Letters
IEEE Control Systems Letters Mathematics-Control and Optimization
CiteScore
4.40
自引率
13.30%
发文量
471
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