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Ekeland variational principles for set-valued functions with set perturbations

机译:ekeland用于设定扰动的集价函数的变分原理

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By using generalized nonconvex separation functionals and a pre-order principle in Qiu [J Math Anal Appl. 2014;419:904-937], we establish a general set-valued Ekeland variational principle (briefly, denoted by EVP), where the objective function is a set-valued map taking values in a real vector space quasi-ordered by a convex cone K and the perturbation consists of a cone-convex subset H of K multiplied by the distance function. Here, the assumption on lower semi-continuity of the objective function is replaced by a weaker one: sequentially lower monotony. And the assumption on lower boundedness of the objective function is taken to be the weakest of several different kinds. From the general set-valued EVP, we deduce a number of particular versions of set-valued EVP, which extend and improve the related results in the literature. In particular, we give several EVPs for approximately efficient solutions in set-valued optimization, which not only extend the related results from vector-valued objective functions into set-valued objective functions, but also improve the related results by removing a usual assumption for K-boundedness (by scalarization) of the objective function's range.
机译:通过使用Qiu的广义非凸分离功能和预先顺序原理[J Math Anal Appl。 2014年; 419:904-937],我们建立了一般的集价值ekeland变分原理(简要介绍了EVP),其中目标函数是一个集价值的地图,以凸面排序的真实矢量空间中的值。锥k和扰动由k的锥形凸子集h乘以距离功能。这里,通过较弱的一个:顺序更低的单调,对目标函数的较低半连续性的假设取代。并且对客观函数下限的假设被认为是几种不同类型的最弱。从一般集价值的EVP来看,我们推导了许多特定版本的集价值EVP,其扩展和改善了文献中的相关结果。特别是,我们在设定值优化中提供了几个EVPS,其近似有效的解决方案,这不仅将相关结果与矢量值的目标函数扩展到设定值的目标函数中,还通过移除k的常用假设来改善相关结果 - 目标函数范围的限制(通过标定化)。

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