Research on encryption algorithms in terahertz communication systems

Yuanming Ding, Jing Cui, Jianxin Jianxin
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Abstract

Aiming at the problem that the terahertz wave beam is narrow and directionality is strong, which makes it easy for the enemy to eavesdrop on the data information, and thus the information cannot be transmitted safely, a pseudo-random sequence generation method based on n-LFSR and AV-NL chaotic mapping is proposed. Different algorithms are selected according to the number of LFSRs. At the same time, the absolute value nonlinear chaotic map is generalized. Finally, the generated two pseudo-random sequences are XOR combined to form the final pseudo-random sequence for source encryption. The simulation results show that this method takes into account the advantages of simple design of linear feedback shift register and high chaotic randomness. The generated pseudo-random sequence has both high linear complexity and the advantages of chaotic non-linearity. The high randomness used in source encryption can improve the security of the system.
太赫兹通信系统中的加密算法研究
针对太赫兹波束窄、方向性强,容易被敌方窃听到数据信息而导致信息无法安全传输的问题,提出了一种基于n-LFSR和AV-NL混沌映射的伪随机序列生成方法。根据lfsr的数量选择不同的算法。同时对绝对值非线性混沌映射进行了推广。最后,对生成的两个伪随机序列进行异或组合,形成最终的伪随机序列进行源加密。仿真结果表明,该方法兼顾了线性反馈移位寄存器设计简单、混沌随机性高的优点。生成的伪随机序列既具有较高的线性复杂度,又具有混沌非线性的优点。在源加密中采用的高随机性可以提高系统的安全性。
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