DocumentCode :
1519250
Title :
A Novel Approach for Mobile Device Design: GA-Based Distributed Optimization to Comply with OTA, SAR, and HAC Standards
Author :
Chen, X.L. ; Ofli, E. ; Chavannes, N. ; Kuster, N.
Author_Institution :
IT´´IS Found., Zurich, Switzerland
Volume :
54
Issue :
1
fYear :
2012
Firstpage :
22
Lastpage :
31
Abstract :
The objective of this study was to investigate the cost and time effectiveness of virtual prototyping when applied to the optimization of antenna system design for mobile phones, compared to traditional development approaches. For the proposed evaluation, an enhanced commercial FDTD-based electromagnetic simulation platform, powered with GPU hardware acceleration and distributed network parallelization, was applied. Advanced genetic algorithms (GAs) were used to obtain robust antenna designs, targeting a multi-goal optimum within a minimum number of simulations. Various antenna structures, including folded monopoles, planar-inverted F, and folded-inverted-conformal antennas were considered. An optimized structure was developed in less than 24 hours, indicating the superiority of virtual prototyping over traditional design and optimization procedures for reducing costs, improving quality, and, particularly, in reducing development time.
Keywords :
finite difference time-domain analysis; genetic algorithms; mobile antennas; mobile handsets; monopole antennas; planar inverted-F antennas; GA-based distributed optimization; GPU hardware acceleration; HAC standards; OTA standards; SAR standards; advanced genetic algorithm; antenna structures; antenna system design; distributed network parallelization; enhanced commercial FDTD-based electromagnetic simulation platform; folded monopoles; folded-inverted-conformal antennas; mobile device design; mobile phones; multigoal optimum; optimized structure; planar-inverted F; robust antenna design; specific absorption rate; virtual prototyping; Costs; Electromagnetic devices; Genetic algorithms; Land mobile radio; Land mobile radio equipment; Mobile antennas; Mobile communication; Optimization; Parallel processing; Virtual prototyping; Optimization; antenna; genetic algorithms; land mobile radio equipment; mobile device; parallel processing;
fLanguage :
English
Journal_Title :
Antennas and Propagation Magazine, IEEE
Publisher :
ieee
ISSN :
1045-9243
Type :
jour
DOI :
10.1109/MAP.2012.6202509
Filename :
6202509
Link To Document :
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