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基于隨機(jī)旋轉(zhuǎn)的準(zhǔn)正交空時分組碼研究

鄧單 朱近康

鄧單, 朱近康. 基于隨機(jī)旋轉(zhuǎn)的準(zhǔn)正交空時分組碼研究[J]. 電子與信息學(xué)報, 2006, 28(9): 1626-1629.
引用本文: 鄧單, 朱近康. 基于隨機(jī)旋轉(zhuǎn)的準(zhǔn)正交空時分組碼研究[J]. 電子與信息學(xué)報, 2006, 28(9): 1626-1629.
Deng Dan, Zhu Jin-Kang. Study on Random-Rotation Quasi-orthogonal Space-Time Block Code[J]. Journal of Electronics & Information Technology, 2006, 28(9): 1626-1629.
Citation: Deng Dan, Zhu Jin-Kang. Study on Random-Rotation Quasi-orthogonal Space-Time Block Code[J]. Journal of Electronics & Information Technology, 2006, 28(9): 1626-1629.

基于隨機(jī)旋轉(zhuǎn)的準(zhǔn)正交空時分組碼研究

Study on Random-Rotation Quasi-orthogonal Space-Time Block Code

  • 摘要: 為了提高準(zhǔn)正交空時分組碼的性能,該文提出基于隨機(jī)旋轉(zhuǎn)的準(zhǔn)正交空時分組碼(Random-rotation QO-STBC)的發(fā)射分集方法。這種方法對每個輸入信息符號序列進(jìn)行隨機(jī)旋轉(zhuǎn),使準(zhǔn)正交空時分組碼的符號間干擾(ISI)隨機(jī)化。仿真結(jié)果表明,在41 MIMO QPSK調(diào)制系統(tǒng)中,采用最大似然檢測方法,當(dāng)誤碼率為10-5時,新的發(fā)射方案比傳統(tǒng)的兩種準(zhǔn)正交空時分組碼誤碼性能有約4dB的增益;當(dāng)誤碼率低于10-4時,RR-J碼相比于ST-LCP碼,仍表現(xiàn)出0.51dB增益;當(dāng)SNR高于16dB時,RR-J與CFR具有幾乎相同的誤碼性能。文章討論了實(shí)際系統(tǒng)中隨機(jī)旋轉(zhuǎn)矩陣數(shù)受限情況下性能的損失,仿真結(jié)果顯示當(dāng)可用隨機(jī)旋轉(zhuǎn)矩陣數(shù)大于16時,對系統(tǒng)性能的影響可以忽略。
  • Alamouti S M. A simple transmit diversity technique for wireless communications[J].IEEE J. on Selected Areas in Communications.1998, 16(8):1451-[2]Tarokh V, Jafarkhani H, Calderbank A R. Space-time block codes from orthogonal designs[J].IEEE Trans. on Information Theory.1999, 45(5):1456-[3]Vielmon Antony, Li Ye, Barry J R. Performance of Alamouti transmit diversity over time-varying Rayleigh-fading channels[J].IEEE Trans. on Wireless Communications.2004, 3(5):1369-[4]Jafarkhani Hamid. A quasi-orthogonal space-time block code[J].IEEE Trans. on Communications.2001, 49(1):1-[5]Hottinen Ari, Tirkkonen Olav. A Randomization Technique for Non-Orthogonal Space-Time Block Codes. IEEE Vehicular Technology Conference, 2001 Spring. Greece, 6-9 May, 2001, 2: 1479.1482.[6]Tirkkonen Olav, Hottinen Ari. Tradeoffs between rate, puncturing and orthogonality in space-time block codes. IEEE International Conference on Communications, 2001, the Netherlands, 30 June -3 July, 2001, 4: 1117.1121.[7]Damen M O, Abed-Meraim K, Belfiore J C. Transmit diversity using rotated constellations with hadamard transform. IEEE Adaptive Systems for Signal Processing, Communications, and Control Symposium 2000, Canada,1-4 Oct., 2000: 396.401.[8]Sharma Naresh, Papadias Constantinos B. Improved quasi-orthogonal codes through constellation rotation[J].IEEE Trans. on Communications.2003, 51(3):332-[9]Su Weifeng, Xia Xiang-Gen. Signal constellations for quasi-orthogonal space-time block codes with full diversity[J].IEEE Trans. on Information Theory.2004, 50(10):2331-[10]Sezgin A, Jorswieck E A. On optimal constellations for quasi-orthogonal space-time codes. IEEE International Conference on Acoustics, Speech, and Signal Processing, ICASSP'2003, Hong Kong, April 6-10, 2003, 4: 345.348.[11]Larsson Erik G. Improving the frame-error-rate of spatial multiplexing in block fading by randomly rotating the signal constellation[J].IEEE Communications Letters.2004, 8(8):514-[12]Xin Yan, Wang Zhengdao, Giannakis, G B. Space-time diversity systems based on linear constellation precoding[J].IEEE Trans. on Wireless Communications.2003, 2(2):294-[13]Jia Hou, Moon Ho Lee, Ju Yong Park. Matrices analysis of quasi-orthogonal space-time block codes[J].IEEE Communications Letters.2003, 7(8):385-[14]Tirkkonen O, Boariu A, Hottinen A. Minimal nonorthogonality rate one space time block codes for 3+ Tx antennas. Spread Spectrum Techniques and Applications, 2000 IEEE Sixth International Symposium on, USA, 6-8 Sept., 2000, 2: 429.432.[15]Marzetta Thomas L, Hochwald Bertrand M. Capacity of a mobile multiple-antenna communication link in Rayleigh flat fading[J].IEEE Trans. on Information Theory.1999, 45(1):139-
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出版歷程
  • 收稿日期:  2005-01-06
  • 修回日期:  2005-07-08
  • 刊出日期:  2006-09-19

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