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2014 EKELAND'S VARIATIONAL PRINCIPLE FOR SET-VALUED MAPS WITH APPLICATIONS TO VECTOR OPTIMIZATION IN UNIFORM SPACES
Qamrul Ansari, Somayeh Eshghinezhad, Majid Fakhar
Taiwanese J. Math. 18(6): 1999-2020 (2014). DOI: 10.11650/tjm.18.2014.4677

Abstract

In this paper, we introduce the concept of a weak $q$-distance and for this distance we derive a set-valued version of Ekeland's variational principle in the setting of uniform spaces. By using this principle, we prove the existence of solutions to a vector optimization problem with a set-valued map. Moreover, we define the $(p,\varepsilon)$-condition of Takahashi and the $(p,\varepsilon)$-condition of Hamel for a set-valued map. It is shown that these two conditions are equivalent. As an application, we discuss the relationship between an $\varepsilon$-approximate solution and a solution of a vector optimization problem with a set-valued map. Also, a well-posedness result for a vector optimization problem with a set-valued map is given.

Citation

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Qamrul Ansari. Somayeh Eshghinezhad. Majid Fakhar. "EKELAND'S VARIATIONAL PRINCIPLE FOR SET-VALUED MAPS WITH APPLICATIONS TO VECTOR OPTIMIZATION IN UNIFORM SPACES." Taiwanese J. Math. 18 (6) 1999 - 2020, 2014. https://doi.org/10.11650/tjm.18.2014.4677

Information

Published: 2014
First available in Project Euclid: 21 July 2017

zbMATH: 1357.49025
MathSciNet: MR3284044
Digital Object Identifier: 10.11650/tjm.18.2014.4677

Subjects:
Primary: 49J40 , 90C33

Keywords: Ekeland's variational principle , vector optimization , weak $q$-distance , well-posedness

Rights: Copyright © 2014 The Mathematical Society of the Republic of China

Vol.18 • No. 6 • 2014
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