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Research on the miller loop optimization of SM9 bilinear pairings

机译:SM9双线性对的米勒回路优化研究

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SM9 is identity-based cryptography designed by bilinear pairing, which can effectively solve the certificates management problems of the PKI and constitutes an important part of Chinese commercial cryptography system. Due to the high complexity of bilinear pairing, SM9 still faces the problem of low efficiency, especially in resource-constrained environments, so performance becomes the key factor that hinders its wide application. This paper has explicitly analyzed detailed computation process of Miller loop in SM9 bilinear pairings and proposed the optimization methods for the point addition, point doubling and line function computation on BN curves. Furthermore, we compare the computational cost of Miller loop under the projective coordinate system and the Jacobian coordinate system and the results show that the latter can improve the efficiency by 5% than the former. The research is very important to optimize the SM9 the performance.
机译:SM9是通过双线性配对设计的基于身份的密码学,可以有效地解决PKI的证书管理问题,并构成中国商业密码学系统的重要组成部分。由于双线性配对的高复杂性,SM9仍然面临效率低下的问题,尤其是在资源受限的环境中,因此性能成为阻碍其广泛应用的关键因素。本文明确地分析了SM9双线性对中Miller回路的详细计算过程,并提出了BN曲线上的点加,点加倍和线函数计算的优化方法。此外,我们比较了在投影坐标系和雅可比坐标系下的米勒环的计算成本,结果表明,后者比前者可将效率提高5%。该研究对于优化SM9的性能非常重要。

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