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Particle Swarm Optimization Versus Genetic Algorithms for Phased Array Synthesis

IEEE Transactions on Antennas and Propagation · 2004 · Vol. 52(3) · pp. 771–779
D.W. BoeringerDouglas H. Werner

Abstract

Particle swarm optimization is a recently invented high-performance optimizer that is very easy to understand and implement. It is similar in some ways to genetic algorithms or evolutionary algorithms, but requires less computational bookkeeping and generally only a few lines of code. In this paper, a particle swarm optimizer is implemented and compared to a genetic algorithm for phased array synthesis of a far-field sidelobe notch, using amplitude-only, phase-only, and complex tapering. The results show that some optimization scenarios are better suited to one method versus the other (i.e., particle swarm optimization performs better in some cases while genetic algorithms perform better in others), which implies that the two methods traverse the problem hyperspace differently. The particle swarm optimizer shares the ability of the genetic algorithm to handle arbitrary nonlinear cost functions, but with a much simpler implementation it clearly demonstrates good possibilities for widespread use in electromagnetic optimization.

Antenna Design and OptimizationMicrowave Engineering and WaveguidesAdvanced Multi-Objective Optimization AlgorithmsParticle swarm optimizationMetaheuristicMulti-swarm optimizationMeta-optimizationComputer scienceAlgorithmGenetic algorithmImperialist competitive algorithmParallel metaheuristicTraverse
Citations
935
FWCI
1190.58
field-weighted impact
References
55
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References
Use of intelligent-particle swarm optimization in electromagnetics
IEEE Transactions on Magnetics · 2002 · 298 citations
Genetic algorithm optimization applied to electromagnetics: a review
IEEE Transactions on Antennas and Propagation · 1997 · 859 citations
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