A Jamming Resource Optimization Method Based on Improved Multi-Objective Moth-to-Flame Algorithm
MA Mingxi
CHEN Xuyi
WANG Shaoqi
LIU Chengkui
WANG Chao
Abstract:Jamming resource optimization is an important link in current EW mission planning.Aimed at the problems that multi-objective optimization algorithm is easy to fall into local optimization and there is too much trouble in converges in three-objective optimization,a multi-aircraft jamming resource optimiza-tion method is proposed based on improved multi-objective moth-to-flame algorithm.Firstly,based on the multi-objective moth-to-flame algorithm,Tent chaotic map is utilized for initializing the population,in-creasing the diversity and uniformity of the solution and improving the search ability of the algorithm.And then,the induction of decision factor and Lévy flight is to make the algorithm accept not only the current solution with a certain probability,but also jump out of the current solution according to the disturbance and search again,enhancing the search ability of the algorithm.Finally,the widely distributed reference points are used to solve the convergence problem of the multi-objective moth-to-flame algorithm in the three-objective function.The simulation results show that this algorithm is better in convergence and pop-ulation diversity than the MOEA/D algorithm and the NSMFO algorithm,and the convergence result of this method is stable,achieving the purpose of assisting combat decision.
Keywords:jamming resource optimizationmulti-objective optimizationmulti-objective moth-to-flame al-gorithmchaotic mappingLévy flightwidely distributed reference points
Publication Date:2025-08-30
Online Publishing Date:2025-08-21(First online date of this platform, not the publication date of the document)
Pages:10( 100-109 )
Journal of Air Force Engineering University

Journal of Air Force Engineering University

ISTICPKUCSCD
ISSN:2097-1915
Year, Vol.(Issue):2025,26(4)