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一种适用于频率选择性衰落信道的Turbo-BLAST系统

黄永明 杨绿溪

黄永明, 杨绿溪. 一种适用于频率选择性衰落信道的Turbo-BLAST系统[J]. 电子与信息学报, 2006, 28(11): 2063-2067.
引用本文: 黄永明, 杨绿溪. 一种适用于频率选择性衰落信道的Turbo-BLAST系统[J]. 电子与信息学报, 2006, 28(11): 2063-2067.
Huang Yong-ming, Yang Lu-xi. Turbo-BLAST over Frequency Selective Fading Channels[J]. Journal of Electronics & Information Technology, 2006, 28(11): 2063-2067.
Citation: Huang Yong-ming, Yang Lu-xi. Turbo-BLAST over Frequency Selective Fading Channels[J]. Journal of Electronics & Information Technology, 2006, 28(11): 2063-2067.

一种适用于频率选择性衰落信道的Turbo-BLAST系统

Turbo-BLAST over Frequency Selective Fading Channels

  • 摘要: 该文提出了一种适用于频率选择性无线衰落信道的Turbo-BLAST方案。在发送端联合采用了随机分层空时编码和分组线性星座预编码OFDM以充分利用多径和空间分集;在接收端比较了两种类型的Turbo接收机,一种是基于最小均方误差准则的软输入软输出的检测模块,它有较低的计算复杂度;另一种采用了类似球形解码的检测模块,它有很好的性能但需要较高的计算复杂度。仿真结果表明该文提出的方案能在保持BLAST高数据速率的同时充分利用信道环境提供的多径和空间分集。
  • Foschini G J, Gans M J. On the limits of wireless communications in a fading environment when using multiple antennas. Wireless Personal Commun., 1998, 6(3): 315-335.[2]Telatar E. Capacity of multi-antenna Gaussian channels[J].European Trans. on Telecommunications.1999, 10(6):585-595[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):744-765[4]Alamouti S M. A simple transmit diversity technique for wireless communications[J].IEEE J. on Select. Areas Commun.1998, 16(8):1451-1458[5]Tarokh V, Jafarkhani H, Calderbank A R. Space-time block codes from orthogonal designs[J].IEEE Trans. on Info. Theory.1999, 45(5):1456-1467[6]Foschini G J. Layered space-time architecture for wirelesscommunication in a fading environment when using multi-element antennas. Bell Labs Technical Journal, 1996, (2): 41-59.[7]Wolniansky P W, Foschini G J, Golden G D, Valenzuela R A. V-BLAST: An architecture for realizing very high data rates over the rich scattering wireless channel. Proc. URSI int. Symp. Signals, Systems and Electronics, University of Pisa, Italy, 1998: 295-300.[8]Sellathurai M, Haykin S. TURBO-BLAST for wireless communications: Theory and experiments[J].IEEE Trans. on Signal Processing.2002, 50(10):2538-2546[9]Sellathurai M, Haykin S. Turbo-BLAST: Performance evaluation in correlated rayleigh-fading environment[J].IEEE J. on Select. Areas Commun.2003, 21(3):340-349[10]Gamal H E, Hammons A R, Jr. A new approach to layered space-time coding and signal processing[J].IEEE Trans. on Info. Theory.2001, 47(6):2321-2334[11]Wang Z, Giannakis G B. Complex-filed coding for OFDM over fading wireless channels[J].IEEE Trans. on Info. Theory.2003, 49(3):707-720[12]Liu Z, Yao X, Giannakis G B. Linear constellation precoding for OFDM with maximum multipath diversity and coding gains[J].IEEE Trans. on Commun.2003, 51(3):416-427[13]Yao X, Wang Z, Giannakis G B. Space-time diversity systems based on linear constellation precoding[J].IEEE Trans. on Wireless Commun.2003, 2(2):294-309[14]Abe T, Matsumoto T. Space-time Turbo equalization in frequency-selective MIMO channels[J].IEEE Trans. on Vehicular Tech.2003, 52(3):469-475[15]Bahl L R, Cocke J, Jelinek F, Raviv J. Optimal decoding of linear codes for minimizing symbol error rate. IEEE Trans. on Info. Theory, 1974, 20(2): 284-287.[16]Tchler M, Singer A C, Koetter R. Minimum mean squared error equalization using a priori information. IEEE Trans. on Signal Processing, 2002, 20(3): 673-683.[17]Wang D M, Zhao J H, Gao X Q, You X H, Y. H, Park W, Kim Y H. Turbo detection and decoding for space-time block-coded block transmission systems. IEEE Wireless Commun. And Networking Conf., Atlanta, GS USA, 2004(3): 1631-1635.[18]Hochwald B M, Brink S T. Achieving near-capacity on a multiple-antenna channel[J].IEEE Trans. on Commu.2003, 51(3):389-399
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出版历程
  • 收稿日期:  2005-04-28
  • 修回日期:  2005-11-10
  • 刊出日期:  2006-11-19

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