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基于余弦符合度的自同步扰码盲识别
引用本文:张立民,谭继远,钟兆根,吴昭军.基于余弦符合度的自同步扰码盲识别[J].电子与信息学报,2022,44(4):1412-1420.
作者姓名:张立民  谭继远  钟兆根  吴昭军
作者单位:1.海军航空大学信息融合研究所 烟台 2640012.海军航空大学航空基础学院 烟台 2640013.西南电子电信研究所 成都 610000
基金项目:泰山学者工程专项;信息系统安全技术重点实验室基金;国家自然科学基金
摘    要:为克服现有非合作自同步扰码识别算法在低信噪比下识别率低、适应性差的缺点,该文提出一种基于余弦符合度的自同步扰码盲识别方法.首先基于信源不平衡性和自同步扰码解扰原理建立自同步扰码的含错校验方程,然后将接收到的软判决序列转化为信息码元的后验概率序列,遍历可能的生成多项式,在遍历的过程中引入余弦符合度作为统计量,通过分析符合...

关 键 词:自同步扰码  余弦符合度  信源不平衡度  低信噪比
收稿时间:2021-03-26

Blind Recognition of Self-synchronous Scramblers Based on Cosine Conformity
ZHANG Limin,TAN Jiyuan,ZHONG Zhaogen,WU Zhaojun.Blind Recognition of Self-synchronous Scramblers Based on Cosine Conformity[J].Journal of Electronics & Information Technology,2022,44(4):1412-1420.
Authors:ZHANG Limin  TAN Jiyuan  ZHONG Zhaogen  WU Zhaojun
Affiliation:1.Department of Information Fusion, Naval Aviation University, Yantai 264001, China2.School of Aviation Basis, Naval Aviation University, Yantai 264001, China3.Southwest Electronics and Telecommunications Research Institute, Chengdu 610000, China
Abstract:In order to overcome the shortcomings of the existing non-cooperative self-synchronous scramblers recognition algorithms with low recognition rate and poor adaptability under low signal-to-noise ratio, a blind recognition method of self-synchronous scramblers based on cosine conformity is proposed. Firstly, based on the source imbalance and self-synchronous scramblers descrambling principle, the error-containing check equation of the self-synchronous scramblers is established, and then the received soft decision sequence is converted into the posterior probability sequence of the information symbol. The possible generating polynomials are traversed. The cosine conformity is introduced as a statistic in the traversal process, and the optimal discrimination threshold is solved by analyzing the statistical characteristics of the cosine conformity. The self-synchronous scramblers generating polynomial is identified according to the relationship between the statistics and the discrimination threshold. The simulation results show that the algorithm can effectively identify the generating polynomial, and the recognition rate is better than the existing algorithm under low signal-to-noise ratio, and it has good low signal-to-noise ratio adaptability. When the source imbalance is 0.1, the length of the intercepted scrambling code sequence is 800 bit and 0.05, and the length of the intercepted scrambling code sequence is 3000 bit, the identification of the generating polynomial can be effectively completed. Compared with the current algorithm, the recognition performance of this algorithm is better than the existing hard decision. The performance of the algorithm is improved by 1~2 dB compared with the hard decision algorithm.
Keywords:
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