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首页> 外文期刊>Indian Journal of Science and Technology >Efficient Bit-Parallel Systolic Polynomial Basis Multiplier over GF(28) based on Irreducible Polynomials
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Efficient Bit-Parallel Systolic Polynomial Basis Multiplier over GF(28) based on Irreducible Polynomials

机译:基于不可约多项式的GF(28)有效位并行收缩期多项式基乘

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Objectives: Multiplication in Galois fields is used in many applications, especially in cryptography. Several algorithms and architectures are proposed in the literature to obtain efficient multiplication operations in Galois fields. Methods/ Statistical Analysis: In this paper, based on a modified interleaved modular multiplication algorithm, a bit-parallel systolic multiplier based on generic irreducible polynomials over Galois Field (GF (28)) is proposed. Theoretical hardware and speed complexity analysis is performed and the proposed multiplier is compared with other systolic multipliers available in the literature for irreducible polynomials. Findings: The proposed systolic multiplier achieves 21.23% reduction in hardware complexity when compared with the best multiplier among existing multipliers for m = 8. Applications/Improvements: The Field-Programmable Gate Array (FPGA) implementation results for the Advanced Encryption Standard (AES) and Two fish algorithms, incorporating the proposed multiplier and some existing designs, are also presented which indicates that the proposed multiplier achieves low area and low power consumption when compared with other systolic multipliers available in the literature.
机译:目标:Galois字段中的乘法用于许多应用程序中,尤其是在密码学中。文献中提出了几种算法和体系结构,以在Galois领域获得有效的乘法运算。方法/统计分析:在本文中,基于改进的交错模乘算法,提出了基于Galois字段上的通用不可约多项式(GF(28))的位并行脉动乘法器。进行了理论上的硬件和速度复杂性分析,并将所提出的乘法器与文献中针对不可约多项式的其他脉动乘法器进行了比较。结果:与现有乘法器中m = 8的最佳乘法器相比,拟议的脉动乘法器在硬件复杂度方面降低了21.23%。应用/改进:高级加密标准(AES)的现场可编程门阵列(FPGA)实现结果以及还提出了两种鱼类算法,结合了拟议的乘法器和一些现有设计,这表明与文献中提供的其他脉动乘法器相比,拟议的乘法器实现了低面积和低功耗。

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