Allele Gene Based Adaptive Genetic Algorithm to the Code Design
In this work, an allele gene adaptive mutation (AGAM) and a schemata crossover (SC) operators are designed to improve the performance of the conventional genetic algorithm (GA) and applied to the code design. Specifically, the proposed AGAM exploits both global and local information of the populatio...
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Published in | IEEE transactions on communications Vol. 59; no. 5; pp. 1253 - 1258 |
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Main Author | |
Format | Journal Article |
Language | English |
Published |
New York, NY
IEEE
01.05.2011
Institute of Electrical and Electronics Engineers The Institute of Electrical and Electronics Engineers, Inc. (IEEE) |
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Abstract | In this work, an allele gene adaptive mutation (AGAM) and a schemata crossover (SC) operators are designed to improve the performance of the conventional genetic algorithm (GA) and applied to the code design. Specifically, the proposed AGAM exploits both global and local information of the population to maintain an appropriate level of diversity throughout the search process. The SC utilizes high-performance schemata to enhance the traditional crossover operation. The combination of the AGAM and SC achieves both goals of maintaining population diversity and simultaneously sustaining the convergence capability of the GA. As a result, the SC and AGAM based genetic algorithm alleviates the inherent premature convergence of the GA, thus significantly increasing the chance of locating the global optimal solution. The application of the proposed allele based adaptive genetic algorithm (AGAGA) to the universal mobile telecommunications system (UMTS) time-division duplex (TDD) mode leads to significant performance gains on autocorrelation (6.1 dB) and cross-correlation properties (2.0 dB) over those of the current standard. |
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AbstractList | In this work, an allele gene adaptive mutation (AGAM) and a schemata crossover (SC) operators are designed to improve the performance of the conventional genetic algorithm (GA) and applied to the code design. Specifically, the proposed AGAM exploits both global and local information of the population to maintain an appropriate level of diversity throughout the search process. The SC utilizes high-performance schemata to enhance the traditional crossover operation. The combination of the AGAM and SC achieves both goals of maintaining population diversity and simultaneously sustaining the convergence capability of the GA. As a result, the SC and AGAM based genetic algorithm alleviates the inherent premature convergence of the GA, thus significantly increasing the chance of locating the global optimal solution. The application of the proposed allele based adaptive genetic algorithm (AGAGA) to the universal mobile telecommunications system (UMTS) time-division duplex (TDD) mode leads to significant performance gains on autocorrelation (6.1 dB) and cross-correlation properties (2.0 dB) over those of the current standard. |
Author | Xiaoming Dai |
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Cites_doi | 10.1049/el:20010839 10.1109/TIT.1977.1055653 10.1109/TEVC.2006.884043 10.1109/ISIT.1997.613429 10.1109/TEVC.2008.2011729 10.1109/21.286385 10.1109/TSMC.1986.289288 10.1109/72.623217 10.1007/978-3-662-02830-8 10.1109/TSMCB.2003.808184 10.1109/TEVC.2008.2003008 10.1109/TIT.1974.1055219 |
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Keywords | Performance evaluation Mobile radiocommunication High performance Adaptive algorithm Wireless telecommunication Time division multiplexing Global local method Genetic algorithm universal mobile telecommunications system (UMTS) Optimal solution Allele gene based adaptive genetic algorithm (AGAGA) allele gene adaptive mutation (AGAM) Cross correlation UMTS system schematacrossover (SC) Autocorrelation |
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SubjectTerms | Adaptive algorithms allele gene adaptive mutation (AGAM) Allele gene based adaptive genetic algorithm (AGAGA) Applied sciences Biological cells Convergence Correlation Crossovers Design engineering Equipments and installations Exact sciences and technology Gallium Genes Genetic algorithms Information, signal and communications theory Measurement Mobile radiocommunication systems Multiplexing Noise levels Optimization Radio frequency Radiocommunications schemata crossover (SC) Signal and communications theory Studies Sustaining Telecommunications Telecommunications and information theory Telecommunications systems universal mobile telecommunications system (UMTS) |
Title | Allele Gene Based Adaptive Genetic Algorithm to the Code Design |
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