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Stochastic Optimal Bounded Control Of Mdof Quasi Nonintegrable-hamiltonian Systems With Actuator Saturation

机译:执行器饱和的Mdof拟非积分哈密顿系统的随机最优有界控制

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摘要

A new bounded optimal control strategy for multi-degree-of-freedom (MDOF) quasi nonintegrable-Hamiltonian systems with actuator saturation is proposed. First, an n-degree-of-freedom (n-DOF) controlled quasi nonintegrable-Hamiltonian system is reduced to a partially averaged Ito stochastic differential equation by using the stochastic averaging method for quasi nonintegrable-Hamiltonian systems. Then, a dynamical programming equation is established by using the stochastic dynamical programming principle, from which the optimal control law consisting of optimal unbounded control and bang-bang control is derived. Finally, the response of the optimally controlled system is predicted by solving the Fokker-Planck-Kolmogorov (FPK) equation associated with the fully averaged Ito equation. An example of two controlled nonlinearly coupled Duffing oscillators is worked out in detail. Numerical results show that the proposed control strategy has high control effectiveness and efficiency and that chattering is reduced significantly compared with the bang-bang control strategy.
机译:提出了一种新的有执行器饱和的多自由度拟非拟哈密顿系统有界最优控制策略。首先,通过使用拟非拟积分哈密顿系统的随机平均方法,将n自由度(n-DOF)控制的拟不可积分哈密顿系统简化为部分平均的伊藤随机微分方程。然后,利用随机动力学规划原理建立了动力学规划方程,从中推导了由无界最优控制和爆炸控制组成的最优控制律。最后,通过求解与完全平均的Ito方程相关的Fokker-Planck-Kolmogorov(FPK)方程,可以预测最优控制系统的响应。详细研究了两个受控非线性耦合Duffing振荡器的例子。数值结果表明,所提出的控制策略具有较高的控制效果和效率,与动摇控制策略相比,抖振明显减少。

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