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Newton-Geodesic HMP algorithms for the optimization of hybrid systems and the geometric properties of hybrid value functions

机译:Newton-Geodesic HMP算法,用于优化混合系统和混合值函数的几何性质

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This paper provides algorithms for the optimization of autonomous hybrid systems based on the geometrical properties of switching manifolds. The first and second sections of the paper introduce optimal hybrid control systems and the third section presents the Newton-Geodesic-Hybrid Minimum Principle (HMP) which is an extension of the Gradient Geodesic-HMP algorithm in [4]. In the fourth section, we extend the analysis yielding the Newton-Geodesic-HMP algorithm to relate the difference of the curvatures of the ambient and switching manifolds to second order variations of the hybrid value function. Finally an example is given to illustrate the results.
机译:本文基于开关歧管的几何特性,提供了用于优化自主混合系统的算法。本文的第一和第二部分介绍了最优的混合控制系统,第三部分介绍了牛顿-大地测量学-混合最小原理(HMP),它是[4]中的梯度测地学-HMP算法的扩展。在第四部分中,我们扩展了产生牛顿-测地-HMP算法的分析,以将环境和切换歧管的曲率差异与混合值函数的二阶变化联系起来。最后给出一个例子来说明结果。

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