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Optimality conditions and duality models for minmax fractional optimal control problems containing arbitrary norms

机译:包含任意范数的minmax分数最优控制问题的最优性条件和对偶模型

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Both parametric and parameter-free necessary and sufficient optimality conditions are established for a class of nondifferentiable nonconvex optimal control problems with generalized fractional objective functions, linear dynamics, and nonlinear inequality constraints on both the state and control variables. Based on these optimality results, ten Wolfe-type parametric and parameter-free duality models are formulated and weak, strong, and strict converse duality theorems are proved. These duality results contain, as special cases, similar results for minmax fractional optimal control problems involving square roots of positive semidefinite quadratic forms, and for optimal control problems with fractional, discrete max, and conventional objective functions, which are particular cases of the main problem considered in this paper. The duality models presented here contain various extensions of a number of existing duality formulations for convex control problems, and subsume continuous-time generalizations of a great variety of similar dual problems investigated previously in the area of finite-dimensional nonlinear programming.
机译:为一类不可微的非凸最优控制问题建立了参数和无参数的必要最优条件,它们具有广义分数目标函数,线性动力学以及状态和控制变量的非线性不等式约束。根据这些最优性结果,构造了十个Wolfe型参数和无参数对偶模型,并证明了弱,强和严格的逆对偶定理。这些对偶结果在特殊情况下包含相似的结果,涉及包含正半定二次型平方根的minmax分数最优控制问题,以及分数,离散max和常规目标函数的最优控制问题,这是主要问题的特殊情况在本文中考虑过。这里介绍的对偶模型包含凸控制问题的许多现有对偶公式的各种扩展,并且包含了以前在有限维非线性规划领域研究的各种相似对偶问题的连续时间概括。

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