Max-plus fundamental solution semigroups for optimal control problems

P. Dower, W. McEneaney, Huan Zhang
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引用次数: 22

Abstract

Recent work concerning the development of fundamental solution semigroups for specific classes of optimal control and related problems is unified and generalized. By exploiting max-plus linearity, semiconvexity, and semigroup properties of the corresponding dynamic programming evolution operator, two types of max-plus fundamental solution semigroup are presented. These semigroups, referred to respectively as max-plus primal and max-plus dual space fundamental solution semigroups, consist of horizon indexed max-plus linear maxplus integral operators that facilitate the propagation of value functions, or (respectively) their semiconvex transform, to longer time horizons via simple max-plus convolutions. Properties of these semigroups, and interconnections between them, are established. Their application to solving specific problems, including a class of operator differential Riccati equations, is summarized.
最优控制问题的最大+基本解半群
最近关于一类最优控制和相关问题的基本解半群的发展的工作是统一和推广的。利用相应动态规划演化算子的最大+线性、半涡旋和半群性质,给出了两类最大+基本解半群。这些半群,分别被称为max-plus原初和max-plus对偶空间基本解半群,由水平索引max-plus线性maxplus积分算子组成,这些算子促进了值函数的传播,或者(分别)它们的半凸变换,通过简单的max-plus卷积到更长的时间范围。建立了这些半群的性质和它们之间的相互联系。总结了它们在求解具体问题中的应用,包括一类算子微分里卡第方程。
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