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JOURNALS // Trudy Instituta Matematiki i Mekhaniki UrO RAN // Archive

Trudy Inst. Mat. i Mekh. UrO RAN, 2022 Volume 28, Number 3, Pages 202–221 (Mi timm1938)

This article is cited in 1 paper

Perturbation method, subdifferentials of nonsmooth analysis, and regularization of the Lagrange multiplier rule in nonlinear optimal control

M. I. Suminab

a Tambov State University named after G.R. Derzhavin
b Lobachevski State University of Nizhni Novgorod

Abstract: We consider the regularization of classical optimality conditions — the Lagrange principle (LP) and the Pontryagin maximum principle (PMP) — in a regular parametric nonlinear (nonconvex) optimal control problem for a parabolic equation with boundary control and with an operator equality-constraint additively depending on the parameter (perturbation method). The set of admissible controls of the problem and the values of the operator defining the equality-constraint are embedded into the spaces of square-summable functions. The main purpose of the regularized LP and PMP is the stable generation of minimizing approximate solutions (MASs) in the sense of J. Warga in the problem under consideration. The regularized LP and PMP are formulated as existence theorems for MASs consisting of minimals (subminimals) of modified Lagrange functionals whose constructions are direct consequences of the subdifferential properties of a lower semicontinuous and, generally speaking, nonconvex value function as a function of the parameter of the problem. They “overcome” the ill-posedness properties of the LP and PMP, are regularizing algorithms, and serve as a theoretical basis for creating algorithms for the practical solution of an optimization problem.

Keywords: nonlinear optimal control, parabolic equation, operator constraint, perturbation method, subdifferentials of nonsmooth analysis, dual regularization, minimizing sequence, regularizing algorithm, Lagrange principle, Kuhn–Tucker theorem, Pontryagin maximum principle.

UDC: 517.9

MSC: 49K20, 49N15, 47J06, 35R25

Received: 30.05.2022
Revised: 18.07.2022
Accepted: 22.07.2022

DOI: 10.21538/0134-4889-2022-28-3-202-221



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