使用数字签名算法(DSA)的电子系统数字签名的数据完整性和安全性

Asep Saepulrohman, Agus Ismangil
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引用次数: 4

摘要

数字签名生成过程从公钥和私钥的创建开始。生成并发布公钥,以验证签名并计算接收到的文档的哈希值。目前,在信息技术的飞速发展中,量子计算机已经出现了用量子比特计算非常庞大和复杂的数据量的能力,与量子计算机相比,它可以在10分钟内完成计算机上需要1025年才能完成的过程。因此,如何在文件上建立可靠的电子签名安全系统成为研究的重点。DSA (Digital Signature Algorithm)是一种用于数字签名的关键算法,它在ElGamal签名算法的基础上,使用SHA-1 (Secure Hash Algorithm)算法将消息转换为消息摘要和参数。作者还给出了一个数字签名加解密过程的例子,通过取任意数字p = 59419和q = 3301来证明消息是可以形成的,并验证了其真实性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Data integrity and security of digital signatures on electronic systems using the digital signature algorithm (DSA)
The digital signature generation process begins with the creation of a public key and a private key. A public key is generated and published to verify the signature and calculate the hash value of the received document. At present, in the very fast development of information technology, quantum computers have emerged the ability to solve very large and complex amounts of data calculated by qubits, which when compared to quantum computers can work 10 minutes to work on a process that takes 1025 years on a computer. Therefore, the research focuses on how electronic signatures on documents have a reliable security system. The Digital Signature Algorithm (DSA) is a key algorithm used for digital signatures, which uses the Secure Hash Algorithm (SHA-1) to convert messages into message digest and parameters based on the ElGamal signature algorithm. The author also shows an example of digital signature encryption and decryption process by taking any numbers p = 59419 and q = 3301 to prove that the message can be formed and verified its authenticity.
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