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An improved Montgomery's algorithm for high-speed RSA public-key cryptosystem
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An improved Montgomery's algorithm for high-speed RSA public-key cryptosystem

Chih-Yuang Su, Shih-Arn Hwang, Po-Song ChenCheng-Wen Wu
IEEE Transactions on Very Large Scale Integration (VLSI) Systems, 卷.7(2), 頁碼.280-284
1999

摘要

Cellular array Data security Modular multiplication Montgomery's algorithm Public-key cryptography RSA Software Hardware and Architecture Electrical and Electronic Engineering
We revise Montgomery's algorithm such that modular multiplication can be executed two times faster. Each iteration in our algorithm requires only one addition, while that in Montgomery's requires two additions. We then propose a cellular array to implement modular exponentiation for the Rivest-Shamir-Adleman cryptosystem. It has approximately 2n cells, where n is the word length. The cell contains one full-adder and some controlling logic. The time to calculate a modular exponentiation is about 2n 2 clock cycles. The proposed architecture has a data rate of 100 kb/s for 512-b words and a 100-MHz clock. © 1999 IEEE.

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