Inverse optimal control on electric power conversion

C. Vega, R. Alzate
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引用次数: 14

Abstract

This article presents the fundamental theory of inverse optimal control problems and its application in output voltage regulation of power converter circuits. An inverse optimal control problem avoids the explicit solution of the Hamilton-Jacobi-Bellman equation that appears in the formulation of an optimal control problem. Some analytical and numerical developments are performed here in order to propose how to deliver optimally a desired level of power to a load. Simulation results show promising predictions of improvement in regulation capabilities of the power converter circuit in spite of environmental perturbations. Ongoing tasks include experimental verification of theoretical predictions and optimality tests.
电力转换的逆最优控制
本文介绍了逆最优控制问题的基本理论及其在功率变换器输出电压调节中的应用。逆最优控制问题避免了在最优控制问题的表述中出现的Hamilton-Jacobi-Bellman方程的显式解。这里进行了一些分析和数值开发,以提出如何以最佳方式向负载提供所需的功率水平。仿真结果表明,在环境扰动的情况下,功率变换器电路的调节能力有所提高。正在进行的任务包括理论预测的实验验证和最优性测试。
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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