Reconstruction of a Synchronous Scrambler Based on Average Check Conformity

Author:

Tan Jiyuan1ORCID,Zhang Limin1,Zhong Zhaogen1ORCID

Affiliation:

1. Naval Aviation University, Yantai 264001, China

Abstract

Channel coding technology is indispensable in digital communication systems. In noncooperative contexts, the identification of the channel codes of the synchronous scrambler is essential. In this paper, a new algorithm that directly uses a soft decision sequence for blind reconstruction of the synchronous scrambler is proposed. First, considering imbalanced signal sources and the principle of scrambling and descrambling the synchronous scrambler, the error-containing equation of the synchronous scrambler is established. Second, the average check conformity is introduced to complete the check relationship detection. Then, based on the statistical characteristics of the average check conformity, the corresponding discrimination threshold is established, and the reconstruction of the feedback polynomial of the synchronous scrambler is completed by traversing the possible primitive polynomials. Finally, the verification equation is determined by the method of subsection optimization, which greatly reduces the number of initial states that need to be traversed; this is critical for scramblers with high-order feedback polynomials (i.e., when the order of the feedback polynomial is greater than 15). Simulations show that the algorithm can effectively reconstruct the synchronous scrambler under imbalanced signal sources. Moreover, the proposed algorithm offers improved performance with about 1–2 dB gain at low signal-to-noise ratios compared with existing methods, and its computational complexity is reasonable.

Funder

National Natural Science Foundation of China

Publisher

Hindawi Limited

Subject

General Engineering,General Mathematics

Reference28 articles.

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1. Blind Estimation of a Scrambler in Long-Code Direct Sequence Spread Spectrum Systems;2023 IEEE International Conference on Service Operations and Logistics, and Informatics (SOLI);2023-12-11

2. Novel Algorithm for Blind Estimation of Scramblers in DSSS Systems;IEEE Transactions on Information Forensics and Security;2023

3. Distinction of Scrambled Linear Block Codes Based on Extraction of Correlation Features;Applied Sciences;2022-11-07

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