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协同通信系统中一种新的分析吞吐量的方法

啜钢 裴静 刘洪来 唐兴伟

啜钢, 裴静, 刘洪来, 唐兴伟. 协同通信系统中一种新的分析吞吐量的方法[J]. 电子与信息学报, 2010, 32(6): 1446-1451. doi: 10.3724/SP.J.1146.2009.00834
引用本文: 啜钢, 裴静, 刘洪来, 唐兴伟. 协同通信系统中一种新的分析吞吐量的方法[J]. 电子与信息学报, 2010, 32(6): 1446-1451. doi: 10.3724/SP.J.1146.2009.00834
Chuai Gang, Pei Jing, Liu Hong-lai, Tang Xing-wei. A Novel Method of Throughput Analysis in Cooperative Communication Systems[J]. Journal of Electronics & Information Technology, 2010, 32(6): 1446-1451. doi: 10.3724/SP.J.1146.2009.00834
Citation: Chuai Gang, Pei Jing, Liu Hong-lai, Tang Xing-wei. A Novel Method of Throughput Analysis in Cooperative Communication Systems[J]. Journal of Electronics & Information Technology, 2010, 32(6): 1446-1451. doi: 10.3724/SP.J.1146.2009.00834

协同通信系统中一种新的分析吞吐量的方法

doi: 10.3724/SP.J.1146.2009.00834

A Novel Method of Throughput Analysis in Cooperative Communication Systems

  • 摘要: 为了提高系统性能并最大限度降低算法复杂度,该文提出了一种新的协同通信系统中吞吐量的更优近似分析方法等效卡方分布法。通过与传统的等效高斯分布法相比,该方法得出了更为精确的吞吐量的理论表达式,并进一步研究信息速率和信噪比对吞吐量的影响,给出了使吞吐量达到最大的最优R。理论分析和仿真结果表明,等效卡方分布法可以更有效地运用到基于多协作中继的协同通信系统的分析研究中。
  • Sendonaris A, Erkip E, and Aazhang B. User cooperation diversity part I: system description[J].IEEE Transaction on Communication.2003, 51(11):1927-1938[2]Wei Ning, Zhang Zhong-pei, and Li Shao-qian. Signal space diversity in decode-and-forward cooperative communication [C]. Communications and Mobile Computing, 2009. CMC 09. WRI International Conference, China, Jan. 2009: 127-130.[3]Zhang Qian, Jia Jun-cheng, and Zhang Jin. Cooperative relay to improve diversity in cognitive radio networks[J]. IEEE Communications Magazine, 2009, 47(2): 111-117.[4]Yu Meng, Li Jing(Tiffany), and Blum R S, Azadet Kameran. Toward maximizing throughput in wireless relay: A general user cooperation model[C][J].Information Sciences and Systems, 2007. CISS 07. 41st Annual Conference, Johns Hopkins University, Department of Electrical Engineering, Baltimore, MD, USA.2007, 09:25-30[5]Ahmed N and Aazhang B. Throughput gains using rate and power control in cooperative relay networks[J].IEEE Transactions on Communications.2007, 55(4):656-660[6]Yeh E M and Berry R A. Throughput optimal control of cooperative relay networks[J].IEEE Transactions on Information Theory.2007, 53(10):3827-3833[7]Yeh E and Berry R. Throughput optimal control of wireless networks with two-hop cooperative relaying[C]. Information Theory 2007. ISIT 2007. IEEE International Symposium, France, June 2007: 351-355.[8]Prasad N and Varanasi M K. Throughput analysis for MIMO systems in the high SNR regime, Information Theory,2006 IEEE International Symposium, ISIT 2006, Seattle, USA, July, 2006: 1954-1958.[9]Gokturk M S, Ercetin O, and Gurbuz O. Throughput analysis of ALOHA with cooperative diversity[J].IEEE Communications Letters.2008, 12(6):468-470[10]Kenichi Kobayashi, Tomoaki Ohtsuki, and Toshinobu Kaneko. Throughput maximization transmission control scheme using precoding for MIMO systems[C]. Communications, 2007. ICC07. IEEE International Conference, Scotland, June 2007: 5098-5102.[11]Hochwald B M, Marzetta T L, and Tarokh V. Multi-antenna channel-hardening and its implications for rate feedback and scheduling [J].IEEE Transactions on Information Theory.2004, 50(9):1893-1909[12]张路, 啜钢, 林立凡, 温小军. 多协作中继多接收天线下解码中继传输的功率分配. 北京邮电大学学报, 2008, 31(6): 104-108.Zhang Lu, Chuai Gang, Lin Li-fan, and Wen Xiao-jun. Power allocation for cooperative decode-and-forward transmission with multiple cooperative relays and multiple received antennas[J]. Journal of Beijing University of Posts and Telecommunications, 2008, 31(6): 104-108.
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出版历程
  • 收稿日期:  2009-06-03
  • 修回日期:  2009-11-24
  • 刊出日期:  2010-06-19

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