Totally Convex Functions for Fixed Points Computation and Infinite Dimensional Optimization

Author:   D. Butnariu ,  A.N. Iusem
Publisher:   Springer
Edition:   Softcover reprint of the original 1st ed. 2000
Volume:   40
ISBN:  

9789401057882


Pages:   205
Publication Date:   14 October 2012
Format:   Paperback
Availability:   Manufactured on demand   Availability explained
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Totally Convex Functions for Fixed Points Computation and Infinite Dimensional Optimization


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Overview

The aim of this work is to present in a unified approach a series of results concerning totally convex functions on Banach spaces and their applications to building iterative algorithms for computing common fixed points of mea­ surable families of operators and optimization methods in infinite dimen­ sional settings. The notion of totally convex function was first studied by Butnariu, Censor and Reich [31] in the context of the space lRR because of its usefulness for establishing convergence of a Bregman projection method for finding common points of infinite families of closed convex sets. In this finite dimensional environment total convexity hardly differs from strict convexity. In fact, a function with closed domain in a finite dimensional Banach space is totally convex if and only if it is strictly convex. The relevancy of total convexity as a strengthened form of strict convexity becomes apparent when the Banach space on which the function is defined is infinite dimensional. In this case, total convexity is a property stronger than strict convexity but weaker than locally uniform convexity (see Section 1.3 below). The study of totally convex functions in infinite dimensional Banach spaces was started in [33] where it was shown that they are useful tools for extrapolating properties commonly known to belong to operators satisfying demanding contractivity requirements to classes of operators which are not even mildly nonexpansive.

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Author:   D. Butnariu ,  A.N. Iusem
Publisher:   Springer
Imprint:   Springer
Edition:   Softcover reprint of the original 1st ed. 2000
Volume:   40
Dimensions:   Width: 16.00cm , Height: 1.20cm , Length: 24.00cm
Weight:   0.366kg
ISBN:  

9789401057882


ISBN 10:   9401057885
Pages:   205
Publication Date:   14 October 2012
Audience:   Professional and scholarly ,  Professional & Vocational
Format:   Paperback
Publisher's Status:   Active
Availability:   Manufactured on demand   Availability explained
We will order this item for you from a manufactured on demand supplier.

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