A new integer algorithm for an efficient VLSI implementation of DST using obfuscation technique

D. Chiper
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引用次数: 0

Abstract

In this paper we propose a new VLSI algorithm for an integer based discrete sine transform (IntDST) that allows an efficient VLSI implementation using systolic arrays. The proposed algorithm have all the benefits of an integer transform as a good approximation of irrational transform coefficients and allows an efficient restructuring into a regular and modular computation structure that allows an efficient VLSI implementation using systolic arrays. An efficient VLSI architecture for discrete sine transform can be obtained that allows an efficient incorporation of the obfuscation technique that significantly improves the hardware security and offering high speed performances due to a concurrent computation and using pipelining technique at a low hardware complexity.
利用模糊技术实现DST的一种新的整数算法
在本文中,我们为基于整数的离散正弦变换(IntDST)提出了一种新的VLSI算法,该算法允许使用收缩阵列实现高效的VLSI。所提出的算法具有整数变换作为无理变换系数的良好近似的所有优点,并允许有效地重组为规则和模块化计算结构,从而允许使用收缩阵列实现高效的VLSI。可以获得用于离散正弦变换的高效VLSI架构,其允许有效地结合模糊技术,该模糊技术显著地提高了硬件安全性并且由于并行计算和以低硬件复杂度使用流水线技术而提供高速性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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