Blind recognition method for the turbo codes on trellis termination

被引:0
|
作者
Zhang M. [1 ,2 ]
Lu K. [1 ,2 ]
Li X.-H. [1 ,2 ]
Lü Q.-T. [1 ,2 ]
机构
[1] Department of Network Engineering, Electronic Engineering Institute, Hefei
[2] Key Laboratory Electronic Restricting Technique, Hefei
来源
| 1600年 / Chinese Institute of Electronics卷 / 38期
关键词
Blind identifying; Code structure; Interleaving recognition; Small area detection; Turbo codes on trellis termination;
D O I
10.3969/j.issn.1001-506X.2016.06.31
中图分类号
学科分类号
摘要
An effective method of recognition is proposed to solve the Turbo codes on the trellis termination problem. According to the special structure of Turbo codes on trellis termination, exhaustively search for the number of columns of the matrix to find related column average maximum, and complete recognition of the code length and the start point of Turbo codes on trellis termination. Then, build the interleaver model of Turbo codes on trellis termination, solve the interleaver parameter with the method of using the bitwise contrast based on hierarchy. Simulation results show that this method has better recognition results, which verify the validity and robustness of the method. © 2016, Editorial Office of Systems Engineering and Electronics. All right reserved.
引用
收藏
页码:1423 / 1428
页数:5
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共 26 条
  • [1] Xu J., Zhou F., Pei Y., Et al., A study on coverage performance for LTE-FDD system and comparison with WCDMA system, Proc. of the IEEE International Conference on Information Technology and Applications, pp. 35-38, (2013)
  • [2] Bhatt T., Bredow J., Comparative performance analysis LTE and A-WCDMA, Proc. of the IEEE 14th Annual Wireless and Microwave Technology Conference, pp. 1-4, (2013)
  • [3] Wilde M.M., Hsieh M.H., Babar Z., Entanglement-assisted quantum turbo codes, IEEE Trans. on Information Theory, 60, 2, pp. 1203-1222, (2014)
  • [4] Ahmed S., Zhang M., Kim S., Et al., Aspects of interleaving for turbo codes, Proc. of the IEEE International Conference on., pp. 946-949, (2013)
  • [5] Beeharry Y., Fowdur T.P., Soyjaudah K.M., Joint source channel decoding of circular non binary turbo codes, Proc. of the IEEE AFRICON, pp. 1-5, (2013)
  • [6] Zuo J., Sun Q., Zhao F., Computational complexities and relative performance of LDPC codes and turbo codes, Proc. of the IEEE International Conference on Software Engineering and Service Science, pp. 251-254, (2013)
  • [7] Soleymani M.R., Gao Y., Vilaipornsawei U., Turbo Coding for Satellite and Wireless Communications, (2002)
  • [8] Liva G., Paolini E., Matuz B., Et al., Short turbo codes over high order fields, IEEE Trans. on Communications, 61, 6, pp. 2201-2211, (2013)
  • [9] Breddermann T., Vary P., Rate-compatible insertion convolutional turbo codes: analysis and application to LTE, IEEE Trans. on Wireless Communications, 13, 3, pp. 1356-1366, (2014)
  • [10] Rajkumarsingh B., Heetun K.Z., Turbo codes and FSK in power line communication, Proc. of the IEEE AFRICON, (2013)