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High performance hardware support for elliptic curve cryptography over general prime field

机译:对常规素数域上的椭圆曲线加密的高性能硬件支持

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Secure information exchange in resource constrained devices can be accomplished efficiently through elliptic curve cryptography (ECC). Due to the high computational complexity of ECC arithmetic, a high performance dedicated hardware architecture is essential to provide sufficient performance in a computation of elliptic curve scalar multiplication. This paper presents a high performance hardware support for elliptic curve cryptography over a prime field GF(p). It exploited a best available possible parallelism of elliptic curve points in projective representation. The proposed hardware for ECC is implemented on Xilinx Virtex-4, Virtex-5 and Virtex-6 FPGAs. A 256-bit scalar multiplication is completed in 2.01 ms, 2.62 ms and 3.91 ms on Virtex-6, Virtex-5 and Virtex-4 FPGA platforms, respectively. The results show that the proposed design is 1.96 times faster with insignificant increase in area consumption as compared to the other reported designs. Therefore, it is a good choice to be used in many ECC based schemes. (C) 2016 Elsevier B.V. All rights reserved.
机译:资源受限设备中的安全信息交换可以通过椭圆曲线密码术(ECC)高效完成。由于ECC算术的高计算复杂性,高性能专用硬件体系结构对于在椭圆曲线标量乘法的计算中提供足够的性能至关重要。本文为质数场GF(p)上的椭圆曲线加密提供了高性能的硬件支持。它在投影表示中利用了椭圆曲线点的最佳可用并行度。 ECC的建议硬件在Xilinx Virtex-4,Virtex-5和Virtex-6 FPGA上实现。在Virtex-6,Virtex-5和Virtex-4 FPGA平台上,分别在2.01 ms,2.62 ms和3.91 ms中完成256位标量乘法。结果表明,与其他报告的设计相比,该提议的设计速度快了1.96倍,而面积消耗却没有明显增加。因此,在许多基于ECC的方案中使用它是一个不错的选择。 (C)2016 Elsevier B.V.保留所有权利。

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