Low-complexity optical space-time trellis code

被引:0
|
作者
Wang H. [1 ]
Xiao B. [1 ]
Jia F. [1 ]
Cao M. [1 ]
Sun J. [2 ]
机构
[1] College of Computer & Communication, Lanzhou University of Technology, Lanzhou, 730050, Gansu
[2] Provincial Network Management Center, Gansu Company Limited China Mobile Group, Lanzhou, 730070, Gansu
来源
| 1600年 / Chinese Optical Society卷 / 36期
关键词
Complexity; Feedback interface cancellation algorithm; Intensity modulation; Optical communications; Optical space-time trellis code;
D O I
10.3788/AOS201636.0806008
中图分类号
学科分类号
摘要
According to the characteristics of optical communication, a low-complexity optical space time trellis code based on pulse position modulation (PPM) is proposed. The scheme is based on the idea of delay diversity of the transmitter, and establishes the correlation of signals in time and space. The feedback interface cancellation algorithm (FICA) is used at the receiving end, and the maximum likelihood decision is used to decode the eliminated interference signal. The proposed scheme reduces the complexity of decoding by sacrificing the performance of transmitting diversity, which reduces the computational requirement of the system. The computational complexities of the algorithm and the Viterbi decoding algorithm are analyzed with the antenna numbers of 2 and 3. The simulation results show that when diversity gain is the same, the decoding complexities of the proposed scheme are reduced by 93.75% and 95.84% respectively, compared with the Viterbi decoding algorithm, and the deteriorations of the bit error rate performance are only 3 dB and 4.77 dB. © 2016, Chinese Lasers Press. All right reserved.
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页数:6
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共 15 条
  • [1] Marjan B.A., Philippa A.M., Desmond P.T., Grouped multilevel space-time trellis codes, IEEE Communications Letters, 14, 3, pp. 232-234, (2010)
  • [2] Fu S.L., Xia X.G., Wang H.Q., Recursive space-time trellis codes using differential encoding, IEEE Transactions on Information Theory, 55, 2, pp. 531-546, (2009)
  • [3] Liang D.Y., Yang M.C., Tan S.N., Et al., Space-time trellis coded transmission scheme for dual-polarized LMS MIMO channels, The First IEEE ICCC International Workshop on Internet of Things (IOT 2013), 6983, 6, pp. 137-141, (2013)
  • [4] Xu J., Wang H., Hu H., Et al., Encoding and decoding method of orthogonal space time block code in free space optical communication systems, Chinese J Lasers, 39, 1, (2012)
  • [5] Wang H., Wang F., Cao M., Et al., A joint detection and iterative decoding algorithm of optical concatenated space-time code, Acta Optica Sinica, 35, 8, (2015)
  • [6] Li M., Cao Y., Li S., Et al., Study on the repetition space-time codes for multiple-input multiple-output free-space optical systems, Chinese J Lasers, 40, 4, (2013)
  • [7] Toboso A.U., Loyka S., Gagnon F., Optimal detection ordering for coded V-BLAST, IEEE Transations on Communitions, 62, 1, pp. 100-111, (2014)
  • [8] Antonio G.Z., Carmen C.V., Beatriz C.V., Space-time trellis coding with transmit laser selection for FSO links over strong atmospheric turbulence channels, Optics Express, 18, 6, pp. 5356-5366, (2010)
  • [9] Antonio G.Z., Ruben B.R., Carmen C.V., Et al., Novel space-time trellis codes for free-space optical communications using transmit laser selection, Optics Express, 23, 19, pp. 24195-24211, (2015)
  • [10] Ke X., Xie M., Gao H., Free space optical communication based on space-time trellis coding, Infrared and Laser Enginnering, 41, 4, pp. 1022-1027, (2012)