1.

Record Nr.

UNINA9911020420803321

Autore

D'Alessandro Paolo

Titolo

On Range Space Techniques, Convex Cones, Polyhedra and Optimization in Infinite Dimensions / / by Paolo d'Alessandro

Pubbl/distr/stampa

Cham : , : Springer Nature Switzerland : , : Imprint : Springer, , 2025

ISBN

3-031-92477-0

Edizione

[1st ed. 2025.]

Descrizione fisica

1 online resource (726 pages)

Disciplina

519.6

Soggetti

Mathematical optimization

Continuous Optimization

Optimization

Optimització matemàtica

Poliedres

Programació lineal

Llibres electrònics

Lingua di pubblicazione

Inglese

Formato

Materiale a stampa

Livello bibliografico

Monografia

Nota di contenuto

-- Introduction.  -- Basic Facts of Set Theory.  -- Linear Spaces.  -- Rudiments of General Topology.  -- Filters: the Fifth Equivalence.  -- Hahn Banach andSeparation Theorems.  -- Locally Convex and Barrelled Spaces.  -- Metrics and pseudometrics, Norms and Pseudonorms.  -- Topological Form of Hahn Banach and Separation Theorems.  -- Extreme points, Faces, Support and the KreinMilman Theorem.  -- Function Spaces.

Sommario/riassunto

This book is a research monograph with specialized mathematical preliminaries. It presents an original range space and conic theory of infinite dimensional polyhedra (closed convex sets) and optimization over polyhedra in separable Hilbert spaces, providing, in infinite dimensions, a continuation of the author's book: A Conical Approach to Linear Programming, Scalar and Vector Optimization Problems, Gordon and Breach Science Publishers, Amsterdam, 1997. It expands and improves author's new approach to the Maximum Priciple for norm oprimal control of PDE, based on theory of convex cones, providing shaper results in various Hilbert space and Banach space settings. It



provides a theory for convex hypersurfaces in lts and Hilbert spaces. For these purposes, it introduces new results and concepts, like the generalizations to the non compact case of cone capping and of the Krein Milman Theorem, an extended theory of closure of pointed cones, the notion of beacon points, and a necessary and sufficient condition of support for void interior closed convex set (complementing the Bishop Phelps Theorem), based on a new decomposition of non closed non pointed cones with non closed lineality space.