CDMA蜂窝无线网络中的无线资源管理和进化计算

Won Jay Song, B. Ahn, S. J. Kim, Mun-kee Choi, Won Hee Kim, B. Kim
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引用次数: 1

摘要

本文提出了分布式功率控制(PC)算法,该算法采用两种进化计算(EC)或遗传算法(GA)技术来求解CDMA蜂窝无线电系统中功率更新的线性方程组。提出的算法应用进化计算算法从表型和基因型的观点,以CDMA功率控制问题。与简单遗传算法相比,进化计算算法的主要优点是能更快地对线性方程组进行优化。以分布式约束功率控制(DCPC)和bang-bang (BB)算法为基本参考,设计并实现了DS-CDMA系统的计算实验。将提出的EC-DCPC表型算法与DCPC算法进行了比较。将GA-DCPC基因型算法与is -95和W-CDMA系统中使用的BB算法进行了比较。仿真结果表明,与DCPC和BB算法相比,本文提出的EC-DCPC表现型算法和GA-DCPC基因型算法分别显著降低了移动终端功耗。计算结果表明,我们提出的EC-DCPC表现型和GA-DCPC基因型算法在增加CDMA蜂窝无线网络容量方面也具有很高的潜在优势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Radio resource management and evolutionary computation in CDMA cellular radio networks
The paper proposes distributed power control (PC) algorithms that employ two evolutionary computation (EC) or genetic algorithm (GA) techniques to solve systems of linear equations for power update in CDMA cellular radio systems. The proposed algorithms apply evolutionary computation algorithms from a phenotypic and a genotypic view to the CDMA power control problem. The major gain from the evolutionary computation algorithms is more rapid optimization on systems of linear equations compared with the simple genetic algorithm (SGA). Employing distributed constrained power control (DCPC) and bang-bang (BB) algorithms as the basic reference, we have designed and implemented computational experiments on the DS-CDMA system. The proposed EC-DCPC phenotypic algorithm is compared with the DCPC algorithm. The GA-DCPC genotypic algorithm is also compared with the BB algorithm used in IS-95 and W-CDMA systems. The simulation results indicate that the proposed EC-DCPC phenotypic and GA-DCPC genotypic algorithms significantly decrease mobile terminal power consumption compared with the DCPC and BB algorithms, respectively. The calculation results show that our proposed EC-DCPC phenotypic and GA-DCPC genotypic algorithms also have a high potential advantage for increasing CDMA cellular radio network capacity.
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