TY - GEN
T1 - Applications of optimization techniques to designs of ultra-wideband planar monopole antennas
AU - Chen, Yen Sheng
AU - Chou, Wei Hsiang
AU - Chen, Shih Yuan
PY - 2012
Y1 - 2012
N2 - Two optimization techniques are respectively applied to the design of ultra-wide band (UWB) planar monopole antennas. They greatly simplify the design procedure, avoiding trial-and-error or one-factor-at-a-time approaches. The first methodology is based on design of experiments (DOE) for size optimization. DOE generates response surface models, which are polynomial functions of the associated geometric parameters, and they can be used for predicting the performance of antennas. The second methodology is based on binary particle swarm optimization (BPSO) for topology optimization. By dividing the metal patch of a planar square monopole antenna into one hundred small square pixels, which can be filled with either metal or air, the corresponding metal/air state of each square pixel is determined by BPSO. A pixelized antenna whose performance meets the design needs is thus obtained. The two methods are respectively applied to the design of an ordinary UWB planar monopole antenna and the associated band-notched design, and they all show excellent performances.
AB - Two optimization techniques are respectively applied to the design of ultra-wide band (UWB) planar monopole antennas. They greatly simplify the design procedure, avoiding trial-and-error or one-factor-at-a-time approaches. The first methodology is based on design of experiments (DOE) for size optimization. DOE generates response surface models, which are polynomial functions of the associated geometric parameters, and they can be used for predicting the performance of antennas. The second methodology is based on binary particle swarm optimization (BPSO) for topology optimization. By dividing the metal patch of a planar square monopole antenna into one hundred small square pixels, which can be filled with either metal or air, the corresponding metal/air state of each square pixel is determined by BPSO. A pixelized antenna whose performance meets the design needs is thus obtained. The two methods are respectively applied to the design of an ordinary UWB planar monopole antenna and the associated band-notched design, and they all show excellent performances.
KW - Design of experiments
KW - particle swarm optimization
KW - planar monopole antennas
KW - ultra-wideband systems
UR - https://www.scopus.com/pages/publications/84874405916
U2 - 10.1109/APMC.2012.6421713
DO - 10.1109/APMC.2012.6421713
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AN - SCOPUS:84874405916
SN - 9781457713309
T3 - Asia-Pacific Microwave Conference Proceedings, APMC
SP - 714
EP - 716
BT - 2012 Asia-Pacific Microwave Conference, APMC 2012 - Proceedings
T2 - 2012 Asia-Pacific Microwave Conference, APMC 2012
Y2 - 4 December 2012 through 7 December 2012
ER -