Title
Equivalences and differences in conic relaxations of combinatorial quadratic optimization problems.
Abstract
Various conic relaxations of quadratic optimization problems in nonnegative variables for combinatorial optimization problems, such as the binary integer quadratic problem, quadratic assignment problem (QAP), and maximum stable set problem have been proposed over the years. The binary and complementarity conditions of the combinatorial optimization problems can be expressed in several ways, each of which results in different conic relaxations. For the completely positive, doubly nonnegative and semidefinite relaxations of the combinatorial optimization problems, we discuss the equivalences and differences among the relaxations by investigating the feasible regions obtained from different representations of the combinatorial condition which we propose as a generalization of the binary and complementarity condition. We also study theoretically the issue of the primal and dual nondegeneracy, the existence of an interior solution and the size of the relaxations, as a result of different representations of the combinatorial condition. These characteristics of the conic relaxations affect the numerical efficiency and stability of the solver used to solve them. We illustrate the theoretical results with numerical experiments on QAP instances solved by SDPT3, SDPNAL+ and the bisection and projection method.
Year
DOI
Venue
2018
10.1007/s10898-018-0676-4
J. Global Optimization
Keywords
Field
DocType
Combinatorial quadratic optimization problems,Binary and complementarity condition,Completely positive relaxations,Doubly nonnegative relaxations,Semidefinite relaxations,Equivalence of feasible regions,Nondegeneracy,90C20,90C22,90C25,90C26
Applied mathematics,Mathematical optimization,Quadratic assignment problem,Quadratic equation,Projection method,Binary Integer Decimal,Quadratic programming,Solver,Conic section,Mathematics,Binary number
Journal
Volume
Issue
ISSN
72
4
0925-5001
Citations 
PageRank 
References 
0
0.34
20
Authors
5
Name
Order
Citations
PageRank
Naoki Ito111.36
Sunyoung Kim246138.82
Masakazu Kojima31603222.51
Akiko Takeda419629.72
Kim-Chuan Toh5109780.39