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智能天线非理想波束赋形对TD-SCDMA系统性能的影响

陈波 杨光 常永宇 杨大成

陈波, 杨光, 常永宇, 杨大成. 智能天线非理想波束赋形对TD-SCDMA系统性能的影响[J]. 电子与信息学报, 2008, 30(4): 776-779. doi: 10.3724/SP.J.1146.2006.01590
引用本文: 陈波, 杨光, 常永宇, 杨大成. 智能天线非理想波束赋形对TD-SCDMA系统性能的影响[J]. 电子与信息学报, 2008, 30(4): 776-779. doi: 10.3724/SP.J.1146.2006.01590
Chen Bo, Yang Guang, Chang Yong-Yu, Yang Da-Cheng. Performance of TD-SCDMA System with Imperfect Beamforming Smart antennas[J]. Journal of Electronics & Information Technology, 2008, 30(4): 776-779. doi: 10.3724/SP.J.1146.2006.01590
Citation: Chen Bo, Yang Guang, Chang Yong-Yu, Yang Da-Cheng. Performance of TD-SCDMA System with Imperfect Beamforming Smart antennas[J]. Journal of Electronics & Information Technology, 2008, 30(4): 776-779. doi: 10.3724/SP.J.1146.2006.01590

智能天线非理想波束赋形对TD-SCDMA系统性能的影响

doi: 10.3724/SP.J.1146.2006.01590
基金项目: 

北京邮电大学-法国电信(北京)研究院联合项目资助课题

Performance of TD-SCDMA System with Imperfect Beamforming Smart antennas

  • 摘要: 在实际的无线网络中,由于无线信道的复杂性以及DOA估计的误差,会导致智能天线系统的波束赋形出现一定程度的偏差。该文通过分析智能天线系统的原理,提出了非理想波束赋形智能天线对系统性能影响的研究方法,研究了智能天线系统的鲁棒性以及不理想波束赋形的智能天线对TD-SCDMA系统性能的影响。理论和仿真结果表明,波束赋形的准确度直接影响移动通信系统的性能,系统所能容忍的波束赋形偏差有一个固定的门限值,该门限值随着系统负载的增加而减小。
  • Liberti J C and Rappaport T S. Smart Antenna for WirelessCommunications: IS-95 and Third Generation CDMAApplications. Englewood Cliffs, NJ: Prentice-Hall, 1999:77-118.[2]Rong Z and Rappaport T S. Simulation of multitargetadaptive algorithms for wireless CDMA systems. IEEEVehicular Technology Conf., Phoenix, AZ, May 1997: 1-5.[3]Garg V K, Laxpati S R, and Wang D. Use of smart antennasystem in universal mobile communications systems (UMTS)[J].IEEE Antennas and Wireless Propagation Lettters.2004, 3:66-70[4]Hartmann C. Capacity formulas for smart antenna systemswith spatial filtering for interference reduction. IEEEVehicular Technology Conf 2004. Los Angeles, U.S.A, Sept.2004: 4285-4289.[5]Rezk M, Kim W, Yun Z, and Iskander M F. Performancecomparison of a novel hybrid smart antenna system versusthe fully adaptive and switched beam antenna arrays. IEEEAntennas and Wireless Propagation Lettters, 2005, 5: 285-288.[6]Chuang C Y, Yu X L, and Kuo C C. Space-time blind delayand DOA estimation in chip-asynchronous DS-CDMAsystems[J].IEEE Global Telecommunications Conf2004. Texas,USA.2004, 4:2508-2512[7]Kishigami T, Yu D Y, Fukagawa T, and Hoshino M. Alow-complexity beamforming algorithm for 3G macro-cellularsystem to reduce interference from high data rate users[J].IEEEVehicular Technology Conf2003. New York, USA.2003, 1:208-212[8]3GPP TS 25.928 v4.0.1. 1.28Mcps functionality for UTRATDD Physical Layer.[9]CCSA TC5_WG1_SWG1_2004_114B, Study Report forco-existence of TD-SCDMA and WCDMA, Dec. 2004.[10]Chen B, Wang Y F and Yang D C. System Level SimulationBased on OMNeT++ for TD-SCDMA. IEEE Proceedings -2005 International Conference on Wireless Communications,Networking and Mobile Computing, WCNM 2005, Wuhan,China, 2005: 1308-1311.[11]3GPP2 C.R1002-0 cdma2000 Evaluation Methodology.[12]Rappaport T S. Wireless Communication Principles Practice American: Prentice-Hall, Inc, 1996, Chap.3.[13]3GPP TS 25.102 v5.0.1. UE Radio Transmission andReception (TDD).
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出版历程
  • 收稿日期:  2006-10-18
  • 修回日期:  2007-03-19
  • 刊出日期:  2008-04-19

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