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High secure sequence design in frequency hopping communications

机译:跳频通信中的高安全序列设计

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摘要

Frequency-hopping (FH) technique is widely used in high-secure communications by exploiting its capabilities of mitigating interference and confidentiality. However, electronic attacks in wireless systems become more and more rigorous, which poses huge challenges to the use of the number theory based and chaos theory assisted sequences. The structure of the FH sequence directly affects the performance of FH communication systems. In this paper, the novel FH sequence generation scheme is proposed with the aid of the so-called Government Standard (GOST) algorithm, which achieves a promising balance between efficiency and security. Moreover, the security performance of the proposed algorithm is analyzed, which reveals that it is more resistant to impossible differential attacks than the widely-used Data Encryption Standard (DES) algorithm. The numerical results show that the FH sequences generated by the GOST algorithm significantly outperform the ones generated by the DES algorithm and chaotic theory in terms of the randomness and complexity.
机译:跳频(FH)技术通过利用其缓解干扰和机密性的功能而被广泛用于高安全性通信中。然而,无线系统中的电子攻击变得越来越严格,这给基于数字理论和混沌理论辅助序列的使用提出了巨大的挑战。 FH序列的结构直接影响FH通信系统的性能。在本文中,借助所谓的政府标准(GOST)算法提出了一种新颖的FH序列生成方案,该方案在效率和安全性之间实现了有希望的平衡。此外,对所提算法的安全性能进行了分析,结果表明,与广泛使用的数据加密标准(DES)算法相比,该算法更能抵抗不可能的差分攻击。数值结果表明,就随机性和复杂性而言,由GOST算法生成的FH序列明显优于由DES算法和混沌理论生成的FH序列。

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