基于轻量级哈希函数的脊柱代码

IF 1.2 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC
Lina Wang, Xinran Li
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引用次数: 1

摘要

脊髓码是一种无速率码,它已被证明在二进制对称信道(BSC)和加性高斯白噪声信道(AWGN)上都能实现容量。无速率脊髓码采用哈希函数作为编码核来生成无限的伪随机符号。一个好的哈希函数可以提高脊柱码的性能。本文设计了一种基于海绵结构的轻量级哈希函数。寄存器的排列函数是一个非线性函数。反馈移位寄存器用于提高系统的随机性和降低误码率。同时,伪随机数发生器采用分层分段组合方式,通过分层结构进一步对信号进行加密,降低输入输出值之间的相关性,生成分段随机数,弥补固定长度混合线性同余输出的不足。仿真结果表明,采用轻量级哈希函数设计的脊髓码在误码率、编码时间和随机性方面都优于原始脊髓码。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Spinal code based on lightweight hash function
A spinal code is the type of rateless code, which has been proved to be capacityachieving over both a binary symmetric channel (BSC) and an additive white Gaussian noise (AWGN) channel. Rateless spinal codes employ a hash function as a coding kernel to generate infinite pseudo-random symbols. A good hash function can improve the performance of spinal codes. In this paper, a lightweight hash function based on sponge structure is designed. A permutation function of registers is a nonlinear function. Feedback shift registers are used to improve randomness and reduce bit error rate (BER). At the same time, a pseudo-random number generator adopts a layered and piecewise combination mode, which further encrypts signals via the layered structure, reduces the correlation between input and output values, and generates the piecewise random numbers to compensate the shortcoming of the mixed linear congruence output with fixed length. Simulation results show that the designed spinal code with the lightweight hash function outperforms the original spinal code in aspects of the BER, encoding time and randomness.
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来源期刊
Archives of Electrical Engineering
Archives of Electrical Engineering ENGINEERING, ELECTRICAL & ELECTRONIC-
CiteScore
2.40
自引率
53.80%
发文量
0
审稿时长
18 weeks
期刊介绍: The journal publishes original papers in the field of electrical engineering which covers, but not limited to, the following scope: - Control - Electrical machines and transformers - Electrical & magnetic fields problems - Electric traction - Electro heat - Fuel cells, micro machines, hybrid vehicles - Nondestructive testing & Nondestructive evaluation - Electrical power engineering - Power electronics
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