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A High Speed VLSI Implementation of 256-bit Scalar Point Multiplier for ECC over GF (p)

机译:GF上ECC的256位标量点乘法器的高速VLSI实现(p)

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With the rapid development of cloud computing, e-commerce, authentication among multi-robot systems, the highspeed implementation of Elliptic Curve Cryptography (ECC) is in widespread use. The performance of ECC is decided by the design of scalar point multiplier, which is one of the most time-consuming component. This paper presents a full set of methods to achieve an ultra high-speed scalar point multiplier, its Scalar Point Multiplication (SPM) is optimized comprehensively in terms of speed-first design approach by concurrently implementing the Point-add (PA) and Point-double (PD) algorithms, improving large integer modular inversion algorithm and large integer modular multiplication algorithm. Finally, Montgomery domain operation and Non-Adjacent Form (NAF) encoding theory are applied to enhance the speed of scalar point multiplier. In the VLSI design, a high-speed pmb256×256 -bit scalar point multiplier is achieved based on SMIC's 65nm process. It can complete single calculation of SPM within 12.5us on average, in other word, 80,000 times of SPM can be computed in one second. Compared to the scalar point multiplier realized by other publications based on VLSI, the reports for circuits synthesis show that our multiplier is optimal in terms of AT
机译:随着云计算,电子商务,多机器人系统之间身份验证的飞速发展,椭圆曲线密码术(ECC)的高速实现已得到广泛使用。 ECC的性能取决于标量点乘法器的设计,它是最耗时的组件之一。本文介绍了实现超高速标量点乘法器的全套方法,其标量点乘法(SPM)通过同时实现Point-add(PA)和Point-Point的速度优先设计方法进行了全面优化。 double(PD)算法,改进了大整数模反转算法和大整数模乘法算法。最后,应用蒙哥马利域运算和非相邻形式(NAF)编码理论来提高标量点乘法器的速度。在VLSI设计中,基于SMIC的65nm工艺实现了高速pmb256×256位标量点乘法器。它平均可以在12.5us之内完成SPM的单次计算,换句话说,在一秒钟内可以完成80,000次SPM。与其他基于VLSI的出版物所实现的标量点乘法器相比,电路综合报告表明,我们的乘法器在AT方面是最优的

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