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Advances in Particle Swarm Optimization for Antenna Designs: Real-Number, Binary, Single-Objective and Multiobjective Implementations

IEEE Transactions on Antennas and Propagation · 2007 · Vol. 55(3) · pp. 556–567
Nanbo JinYahya Rahmat‐Samii

Abstract

<para xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink"> The particle swarm optimization (PSO) is a recently developed evolutionary algorithm (EA) based on the swarm behavior in the nature. This paper presents recent advances in applying a versatile PSO engine to real-number, binary, single-objective and multiobjective optimizations for antenna designs, with a randomized Newtonian mechanics model developed to describe the swarm behavior. The design of aperiodic (nonuniform and thinned) antenna arrays is presented as an example for the application of the PSO engine. In particular, in order to achieve an improved peak sidelobe level (SLL), element positions in a nonuniform array are optimized by real-number PSO (RPSO). On the other hand, in a thinned array, the <emphasis emphasistype="smcaps">on/off </emphasis> state of each element is determined by binary PSO (BPSO). Optimizations for both nonuniform arrays and thinned arrays are also expanded to multiobjective cases. As a result, nondominated designs on the Pareto front enable one to achieve other design factors than the peak SLL. Optimized antenna arrays are compared with periodic arrays and previously presented aperiodic arrays. Selected designs fabricated and measured to validate the effectiveness of PSO in practical electromagnetic problems. </para>

Antenna Design and OptimizationMicrowave Engineering and WaveguidesAdvanced Multi-Objective Optimization AlgorithmsAperiodic graphParticle swarm optimizationMathematical optimizationComputer scienceBinary numberAntenna (radio)Multi-objective optimizationAntenna arraySwarm behaviourOrthogonal array
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793
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1017.95
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References
Evolving artificial neural networks
Proceedings of the IEEE · 1999 · 2,977 citations
Particle swarm optimization in electromagnetics
IEEE Transactions on Antennas and Propagation · 2004 · 2,224 citations
Thinned arrays using genetic algorithms
IEEE Transactions on Antennas and Propagation · 1994 · 1,092 citations
Particle Swarm Optimization Versus Genetic Algorithms for Phased Array Synthesis
IEEE Transactions on Antennas and Propagation · 2004 · 935 citations
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