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高速移动Rayleigh信道下的相位调制OFDM系统 被引量:1

Effects of Fast Moving Rayleigh Channel on PSK-OFDM Systems
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摘要 高速移动的Rayleigh信道会使得传输信号的频谱发生Doppler扩展。本文对存在Doppler扩展的OFDM统进行子载波干扰的理论分析,并针对高速Rayleigh信道对误码率造成的影响进行了基带仿真。仿真结果证实,相位调制OFDM系统在存在Doppler扩展的Rayleigh信道条件下的性能可以用单载波相位调制系统在慢衰落条件下的误码率理论值来近似;即使在移动台高速移动的情况下,实际中的Doppler扩展并不会使相位调制OFDM系统的误码率出现地板效应,所以相位调制OFDM系统比较适合高速移动的Rayleigh信道条件下的高速数据传输。 The Doppler spread of signal spectrum could be caused by fast moving Rayleigh channel. The interference is analyzed for OFDM system over Doppler spread channel. And the BER of BPSK-OFDM system is simulated. It is concluded that the Rayleigh channel is slow fading in reality. The BER of PSK-OFDM system approximates to that of single carrier system, and there are no floor effects for the BER of PSK-OFDM system over the Doppler spread Rayleigh channel. Therefore, PSK-OFDM is suitable for the high-rate data communication over Rayleigh channel.
出处 《电路与系统学报》 CSCD 2004年第3期14-17,共4页 Journal of Circuits and Systems
基金 863重大研究课题(2001AA123016) 国家自然科学基金资助项目(60172052 60002009) 国家自然科学基金重大研究计划资助项目(90104018)
关键词 相位调制OFDM Doppler扩展 RAYLEIGH信道 地板效应 慢衰落 PSK-OFDM Doppler spread Rayleigh channel floor effect slow fading
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参考文献10

  • 1Cimini Jr L J. Analysis and simulation of a digital mobile channel using orthogonal frequency division multiplexing [J]. IEEE Trans. Commun., 1985-07, COM-33: 665-675.
  • 2Russell M, Stüber G L. Interchannel interference analysis of OFDM in a mobile environment [A]. Proc. VTC'95 [C]. 1995, 820-824.
  • 3Robertson P, Kaiser S. The effects of Doppler spreads in OFDM (A) mobile radio system [A]. Prof. VTC'99-Fall [C]. 1999, 329-333.
  • 4Robertson P, Kaiser S. Analysis of the loss of orthogonality through Doppler spread in OFDM system [A]. Prof. Globecom'99 [C]. 1999, 701-706.
  • 5Li Ye, Cimini Jr L J. Bounds on the Interchannel Interference of OFDM in Time-Varying Impairments [J]. IEEE Trans. Commun., 2001-03, 49(3): 401-404.
  • 6Nee Richard van, Prasad Ramjee. OFDM wireless multimedia communications [M]. Boston, London: Artech House, 2000-01.
  • 7Prokis J G. Digital communication [M]. McGraw-Hill, Inc., 1995.
  • 8Rappaport S. Theodore. Wireless communication principles & practice [M]. Prentice Hall, Inc., 1996.
  • 9Pahlavan, Kaveh. Wireless Information Networks [M]. John Wiley & Sons, Inc., 1995.
  • 10Jakes Jr W C. Microwave Mobile Communications [M]. New York: Wiley, 1974.

同被引文献5

  • 1王晴晴 赵小虎 周兴 等.基于MATLAB的OFDM基本仿真平台设计.计算机科学,2009,36(4):139-146.
  • 2Kang Y, Ahn D,Kim S.Preamble pattern independent timing esti- mation for OFDM systems [J]. Electronics Letters, 2008,44 (5): 121-122.
  • 3Hao Zhou,Amaresh V Malipatil,Yih-Fang Huang.OFDM carrier synchronization based on time-domain channel estimates [J]. IEEE Transactions on Wireless Communications, 2008,7 (8): 2988-2999.
  • 4尹长川,罗涛,乐光新,等.多载波宽带无线通信技术[M].北京:北京邮电大学出版社,2006.
  • 5孔令红,都思丹.多径瑞利衰落信道下OFDM系统仿真[J].计算机仿真,2008,25(7):105-108. 被引量:7

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