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A stochastically averaged optimal control strategy for quasi-Hamiltonian systems with actuator saturation

机译:具有执行器饱和的拟哈密顿系统的随机平均最优控制策略

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摘要

A stochastic optimal control strategy for quasi-Hamiltonian systems with actuator saturation is proposed based on the stochastic averaging method and stochastic dynamical programming principle. First, the partially completed averaged Ito stochastic differential equations for the energy processes of individual degree of freedom are derived by using the stochastic averaging method for quasi-Hamiltonian systems. Then, the dynamical programming equation is established by applying the stochastic dynamical programming principle to the partially completed averaged Ito equations with a performance index. The saturated optimal control consisting of unbounded optimal control and bounded bang-bang control is determined by solving the dynamical programming equation. Numerical results show that the proposed control strategy significantly improves the control efficiency and chattering attenuation of the corresponding bang-bang control. (C) 2006 Elsevier Ltd. All rights reserved.
机译:基于随机平均方法和随机动态规划原理,提出了一种具有致动器饱和的拟哈密顿系统的随机最优控制策略。首先,使用准哈密顿系统的随机平均方法,推导了针对各个自由度能量过程的部分完成的平均伊藤随机微分方程。然后,通过将随机动态规划原理应用于具有性能指标的部分完成的平均Ito方程,来建立动态规划方程。通过求解动力学规划方程,确定了由无界最优控制和有界爆炸控制组成的饱和最优控制。数值结果表明,所提出的控制策略显着提高了相应爆炸控制的控制效率和抖振衰减。 (C)2006 Elsevier Ltd.保留所有权利。

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