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Hardware and software normal basis arithmetic for pairing-based cryptography in characteristic three

机译:特征三中基于配对的加密的软硬件常态算法

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Although identity-based cryptography offers a number of functional advantages over conventional public key methods, the computational costs are significantly greater. The dominant part of this cost is the Tate pairing, which, in characteristic three, is best computed using the algorithm of Duursma and Lee. However, in hardware and constrained environments, this algorithm is unattractive since it requires online computation of cube roots or enough storage space to precompute required results. We examine the use of normal basis arithmetic in characteristic three in an attempt to get the best of both worlds: an efficient method for computing the Tate pairing that requires no precomputation and that may also be implemented in hardware to accelerate devices such as smart-cards.
机译:尽管基于身份的加密技术比常规的公共密钥方法具有许多功能优势,但计算成本却明显更高。该成本的主要部分是泰特配对,在特征三中,最好使用Duursma和Lee的算法进行计算。但是,在硬件和受限环境中,此算法没有吸引力,因为它需要在线计算立方根或足够的存储空间以预先计算所需的结果。我们尝试在特征三中使用正则基算术,以力求两全其美:一种有效的泰特配对计算方法,不需要预先计算,也可以在硬件中实现以加速诸如智能卡之类的设备。

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