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New design of single-symbol decodable STBCs for MIMO communication system

New design of single-symbol decodable STBCs for MIMO communication system
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摘要 Single-symbol maximum-likelihood (ML) decodable space-time block codes (SSDCs) can achieve a maximal symbol rate of 6/7 for multiple-input multiple-output (MIMO) communication system with five or six transmit antennas by using rate-efficient generalized coordinate interleaved orthogonal designs (RE-GCIODs). Unfortunately, there are many zero entries in the eodeword matrix of RE-GCIODs. The zero entries result in high peak-to-average power ratio (PAPR) and also impose a severe constraint on hardware implementation. In this paper, for MIMO communication systems with five or six transmit antennas and one receive antenna, a new SSDC is proposed. By combining Alamouti code and orthogonal space-time block code (OSTBC), desirable properties like RE-GCIODs can be achieved and are derived, including maximal symbol rate up to 6/7, full diversity and single-symbol ML decodability. Moreover, by reducing the number of zero entries in the codeword matrix, the peak-to-average power ratio (PAPR) of our proposed code is lower than RE-GCIODs. Simulation results show that the proposed codes outperform RE-GCIODs under peak power constraint while performing almost same under average power constraint. Single-symbol maximum-likelihood (ML) decodable space-time block codes (SSDCs) can achieve a maximal symbol rate of 6/7 for multiple-input multiple-output (MIMO) communication system with five or six transmit antennas by using rate-efficient generalized coordinate interleaved orthogonal designs (RE-GCIODs). Unfortunately, there are many zero entries in the eodeword matrix of RE-GCIODs. The zero entries result in high peak-to-average power ratio (PAPR) and also impose a severe constraint on hardware implementation. In this paper, for MIMO communication systems with five or six transmit antennas and one receive antenna, a new SSDC is proposed. By combining Alamouti code and orthogonal space-time block code (OSTBC), desirable properties like RE-GCIODs can be achieved and are derived, including maximal symbol rate up to 6/7, full diversity and single-symbol ML decodability. Moreover, by reducing the number of zero entries in the codeword matrix, the peak-to-average power ratio (PAPR) of our proposed code is lower than RE-GCIODs. Simulation results show that the proposed codes outperform RE-GCIODs under peak power constraint while performing almost same under average power constraint.
作者 PHAM Van-bien
出处 《The Journal of China Universities of Posts and Telecommunications》 EI CSCD 2011年第6期44-50,共7页 中国邮电高校学报(英文版)
关键词 space-time block code (STBC) full diversity MIMO PAPR space-time block code (STBC), full diversity, MIMO, PAPR
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参考文献13

  • 1Tarokh V, Seshadri N, Calderbank A R. Space-time codes for high data rate wireless communications: performance criterion and code construction. IEEE Transactions on Information Theory, 1998, 44(2): 744-765.
  • 2Alamouti S M. A simple transmit diversity technique for wireless communications. IEEE Journal on Selected Areas in Communications, 1998, 16(8): 1451-1458.
  • 3Tarokh V, Jafarkhani H, Calderbank A R. Space-time block codes from orthogonal designs. IEEE Transactions on Information Theory, 1999, 45(5): 1456-1467.
  • 4Liang X B. Orthogonal designs with maximal rates. IEEE Transactions on Information Theory, 2003, 49(10): 2468-2503.
  • 5Wang H Q, Xia X G. Upper bounds of rates of complex orthogonal space-time block codes. IEEE Transactions on Information Theory, 2003, 49(10): 2788-2796.
  • 6Lu K, Fu S, Xia X G. Closed-form designs of complex orthogonal space-time block codes of rates (k+l)/2k for (2k-1) or 2k transmit antennas. IEEE Transactions on Information Theory, 2005, 51(12): 4340-4347.
  • 7Khan M Z A, Rajan B S. Single-symbol maximum-likelihood decodable linear STBCs. IEEE Transactions on Information Theory, 2006, 52(5): 2062-2091.
  • 8Yuen C, Guan Y L, Tjhung T T. Power-balanced orthogonal space-time block code. IEEE Transactions on Vehicular Technology, 2008, 57(5): 3304-3309.
  • 9Dao D N, Yuen C, Tellambura C, et al. Four-group decodable space-time block codes. 1EEE Transactions on Signal Processing, 2008, 56(1): 424-430.
  • 10Wang H Q, Wang D, Xia X G. On optimal quasi-orthogonal space-time block codes with minimum decoding complexity. IEEE Transactions on Information Theory, 2009, 55(3): 1104-1130.

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