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JOURNALS // Zhurnal Vychislitel'noi Matematiki i Matematicheskoi Fiziki // Archive

Zh. Vychisl. Mat. Mat. Fiz., 2019 Volume 59, Number 12, Pages 2111–2128 (Mi zvmmf11001)

This article is cited in 4 papers

Launch pad method in multiextremal multiobjective optimization problems

A. V. Lotov, A. I. Ryabikov

Dorodnicyn Computing Center, Federal Research Center "Computer Science and Control", Russian Academy of Sciences, Moscow, 119333 Russia

Abstract: A new method is proposed for approximating the Edgeworth–Pareto hull of a feasible objective set in a multiobjective optimization (MOO) problem with criteria functions having numerous local extrema. The method is based on constructing a launch pad, i.e., a subset of the feasible decision set such that gradient procedures for local optimization of criteria and scalarizing functions of criteria starting at these points yield efficient decisions of the MOO problem. A launch pad is constructed using the optima injection method, which combines the usual multistart approach with a genetic algorithm for Pareto frontier approximation. It is shown that the proposed launch pad method (LPM) can also be used to approximate the effective hull of a nonconvex multidimensional set. A theoretical analysis of LPM is presented, and experimental results are given for the applied problem of constructing control rules for a cascade of reservoirs, which is reduced to a complicated MOO problem with scalarizing functions having numerous local extrema.

Key words: nonlinear multiobjective optimization, Pareto frontier, Edgeworth–Pareto hull, effective hull of a nonconvex set, approximation of Edgeworth–Pareto hull, approximation of the effective hull of a multidimensional set.

UDC: 7.977.5

Received: 08.07.2019
Revised: 08.07.2019
Accepted: 05.08.2019

DOI: 10.1134/S0044466919120172


 English version:
Computational Mathematics and Mathematical Physics, 2019, 59:12, 2041–2056

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