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Linear array geometry synthesis with minimum sidelobe level and null control using particle swarm optimization

IEEE Transactions on Antennas and Propagation · 2005 · Vol. 53(8) · pp. 2674–2679
Majid KhodierChristos G. Christodoulou

Abstract

This paper describes the synthesis method of linear array geometry with minimum sidelobe level and null control using the particle swarm optimization (PSO) algorithm. The PSO algorithm is a newly discovered, high-performance evolutionary algorithm capable of solving general N-dimensional, linear and nonlinear optimization problems. Compared to other evolutionary methods such as genetic algorithms and simulated annealing, the PSO algorithm is much easier to understand and implement and requires the least of mathematical preprocessing. The array geometry synthesis is first formulated as an optimization problem with the goal of sidelobe level (SLL) suppression and/or null placement in certain directions, and then solved by the PSO algorithm for the optimum element locations. Three design examples are presented that illustrate the use of the PSO algorithm, and the optimization goal in each example is easily achieved. The results of the PSO algorithm are validated by comparing with results obtained using the quadratic programming method (QPM).

Antenna Design and OptimizationRadio Astronomy Observations and TechnologyStructural Analysis and OptimizationParticle swarm optimizationMathematical optimizationMathematicsAlgorithmQuadratic programmingNull (SQL)Multi-swarm optimizationOptimization problemComputer science
Citations
677
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741.47
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References
Sidelobe reduction in array-pattern synthesis using genetic algorithm
IEEE Transactions on Antennas and Propagation · 1997 · 470 citations
Use of intelligent-particle swarm optimization in electromagnetics
IEEE Transactions on Magnetics · 2002 · 298 citations
Particle swarm optimization in electromagnetics
IEEE Transactions on Antennas and Propagation · 2004 · 2,224 citations
Particle Swarm Optimization Versus Genetic Algorithms for Phased Array Synthesis
IEEE Transactions on Antennas and Propagation · 2004 · 935 citations
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