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MIMO-OFDM广义空间信道频率响应间的相关性分析

姜永权 周渊平 戴宪华 柳平

姜永权, 周渊平, 戴宪华, 柳平. MIMO-OFDM广义空间信道频率响应间的相关性分析[J]. 电子与信息学报, 2006, 28(11): 2094-2098.
引用本文: 姜永权, 周渊平, 戴宪华, 柳平. MIMO-OFDM广义空间信道频率响应间的相关性分析[J]. 电子与信息学报, 2006, 28(11): 2094-2098.
Jiang Yong-quan, Zhou Yuan-ping, Dai Xian-hua, Liu Ping. Correlation Analysis Among Frequency Responses of MIMO-OFDM Wide-Sense Space Channels[J]. Journal of Electronics & Information Technology, 2006, 28(11): 2094-2098.
Citation: Jiang Yong-quan, Zhou Yuan-ping, Dai Xian-hua, Liu Ping. Correlation Analysis Among Frequency Responses of MIMO-OFDM Wide-Sense Space Channels[J]. Journal of Electronics & Information Technology, 2006, 28(11): 2094-2098.

MIMO-OFDM广义空间信道频率响应间的相关性分析

Correlation Analysis Among Frequency Responses of MIMO-OFDM Wide-Sense Space Channels

  • 摘要: 多输入多输出-正交频分复用(MIMO-OFDM)技术被普遍认为是宽带无线通信的一种最具前景的技术。以往的研究重点放在如何利用收发天线间的多路空间信道,该文首次提出混合天线信道与波束信道的广义空间信道这一新概念。在不增加天线数目的前提下,广义空间信道能够增加空间信道的数量。当独立多径数远大于阵元数时,广义空间信道频率响应间的相关性较小,因此能够使空频码(SFC)的分集、编码及复用增益得到提高,从而提高MIMO-OFDM系统的性能。
  • Chuang J, Sollenberger N, Beyond 3G: Wideband wireless data access based on OFDM and dynamic packet assignment. IEEE Communications Magazine, July 2000: 78.87.[2]Yang B G, Letaief K B, Cheng R S, Cao Z G. Channel estimation for OFDM transmission in multipath fading channels based on parametric channel modeling[J].IEEE Trans. on Commun.2001, 49(3):467-[3]Tarokh V, Seshadri N, Calderbank A R. Space-time codes for high data rate wireless communicationPerformance criterion and code construction[J].IEEE Trans. on Info. Theory.1998, 44(2):744-[4]Alamouti S M. A simple transmit diversity technique for wireless communications[J].IEEE J. on Select. Areas. Commun.1998, 16(8):1451-[5]Foschini G J, Golden G D, Valenzuela R A, et al.. Simplified processing for high spectral efficiency wireless communication employing multi-element arrays[J].IEEE J. on Select. Areas Commun.1999, 17(10):1841-[6]Liu Z Q, Giannakis G B, Barbarossa S, et al.. Transmit-antennae space-time block coding for generalized OFDM in the presence of unknown multipath[J].IEEE J. on Select. Areas Commun.2001, 19(7):1352-[7]Su W F, Safar Z, Olfat M, et al.. Obtaining full-diversity space-frequency codes from space-time codes via mapping[J].IEEE Trans. on Signal processing.2003, 51(11):2905-[8]Bolcskei H, Borgmann M, Paulraj A J. Impact of the propagation environment on the performance of space-frequency coded MIMO-OFDM[J].IEEE J. on Select. Areas Commun.2003, 21(3):427-[9]Su W F, Safar Z, Liu K J R. Full-rate full-diversity space-frequency codes with optimum coding advantage[J].IEEE Trans. on Info. Theory.2005, 51(1):229-[10]Liu Z Q, Xin Y, Giannakis G. Space-time-frequency coded OFDM over frequency selective fading channels[J].IEEE Trans. on Signal Processing.2002, 50(10):2465-[11]Bolcskei H, Gesbert D, Paulraj A J. On the capacity of OFDM-based spatial multiplexing systems[J].IEEE Trans. on Commun.2002, 50(2):225-[12]Zelst A, Schenk T C W. Implementation of a MIMO OFDM-based wireless LAN system[J].IEEE Trans. on Signal Processing.2004, 52(2):483-[13]Li Y X, Huang X J. The simulation of independent rayleigh faders[J].IEEE Trans. on Commun.2002, 50(9):1503-[14]Ertel R B, Cardieri P. Overview of spatial channel models for antenna array communication systems. IEEE Personal Communications, February 1998: 10-22.[15]Liberit J C, Rappaport T[16]Sklar B. Rayleigh fading channels in mobile digital communication systems Part I: Characterization. IEEE Communications Magazine, July 1997: 90.100.[17]Zhao X W, Kivinen J, Vainikainen P. Propagation characteristics for wideband outdoor mobile communications at 5[J].3GHz. IEEE J. on Selec. Areas Commun.2002, 20(3):507-[18]Sampath H, Talwar S, Tellado J, et al.. A fourth-generation MIMO-OFDM broadband wireless system: Design, performance, and field trail results. IEEE Communications Magazine, 2002: 143.149.
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出版历程
  • 收稿日期:  2005-04-11
  • 修回日期:  2005-08-03
  • 刊出日期:  2006-11-19

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