最优控制系统有限水平跟踪问题的一种简化SDRE技术

D. Naidu, Sudipta Paul, Ahmed Khamis, Craig Rieger
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引用次数: 3

摘要

利用状态相关Riccati方程(SDRE)技术进行非线性系统闭环最优控制是近十年来研究的热点。现有的SDRE技术对于连续时间、有限视界、最优跟踪问题是近似的,且涉及多个步骤,计算量大。针对一类非线性闭环有限水平最优跟踪问题,提出了一种简化的SDRE技术。跟踪不仅需要求解非线性矩阵微分里卡蒂方程(DRE),还需要求解非齐次矢量微分方程(VDE)。本文提出的简化SDRE最优跟踪方法,在有限水平周期的小区间内不假设Riccati系数和矢量系数恒定,在每个小区间内采用本文作者开发的矩阵DRE和VDE的解析解及相应的MATLAB程序,避免了现有SDRE技术的近似性,省去了现有SDRE技术的多步操作。以基于永磁同步发电机(PMSG)的风能转换系统(WECS)为例,说明了所提出的简化有限视界SDRE跟踪技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Simplified SDRE Technique for Finite Horizon Tracking Problem in Optimal Control Systems
Closed loop optimal control of nonlinear systems using state dependent Riccati equation (SDRE) technique has been an active research area during the last decade. The existing SDRE technique for continuous time, finite horizon, optimal tracking problem is approximate and involves several steps which makes it computationally complex. In this paper, a simplified SDRE technique is proposed for a nonlinear closed loop finite horizon optimal tracking problem. For tracking, one is faced with not only solving the nonlinear matrix differential Riccati equation (DRE) but also solving the nonhomogeneous vector differential equation (VDE). The proposed simplified SDRE method for optimal tracking, without the assumption of the Riccati coefficient and vector coefficient being constant during the small intervals of the finite-horizon period, employs the analytic solution of matrix DRE and VDE and the associated MATLAB program developed by the authors of this paper at each small intervals, thereby avoiding the approximate nature and eliminating the several steps associated with the existing SDRE technique. The proposed simplified finite horizon SDRE tracking technique is illustrated with a permanent magnet synchronous generator (PMSG) based wind energy conversion system (WECS).
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