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Discrete Optimal Control of Interconnected Mechanical Systems

机译:离散机械系统的离散最佳控制

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This article develops variational integrators for a class of underactuated mechanical systems using the theory of discrete mechanics. A discrete optimal control problem is then formulated for this class of system on the phase spaces of the actuated and unactuated subsystems separately. Exploiting the left-trivialization of the cotangent bundle, and assuming the time-step of discrete evolution is small enough to exploit the diffeomorphism feature of the exponential map in a neighbourhood of the identity of the Lie group, that enables a mapping of the group variables to the Lie algebra, a variational approach is adopted to obtain the first order necessary conditions that characterise optimal trajectories. The proposed approach is then demonstrated on two benchmark underactuated systems through numerical experiments.
机译:本文开发了一种使用离散力学理论的一类欠抖动机械系统的变分集成商。然后将离散的最佳控制问题分别用于该类的致动和unicate子系统的相位空间上的这种系统。利用Cotangent捆绑的左级化,并且假设离散的进化的时间步长足够小,以利用谎言组的身份附近的指数映射的扩散特征,这使得组变量的映射对于Lie代数,采用改变方法来获得表征最佳轨迹的第一顺序条件。然后通过数值实验在两个基准欠扰动系统上证明了所提出的方法。

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