后量子加密方法概览

Jency Rubia J, Babitha Lincy R, E. Nithila, Sherin Shibi C, Rosi A
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摘要

密码学是一门用其他代码隐藏重要数据或信息的艺术。它是一种确保信息和通信安全的实践和研究。因此,密码学可以防止第三方干预数据通信。密码学技术将数据转换成其他形式,以提高安全性和抵御攻击的能力。自从人工智能领域进入市场以来,提高数据传输安全性的主旨就已经出现。因此,AES、3DES、RSA、Diffie-Hellman 和 ECC 等现代计算加密算法应运而生。目前使用的这些公钥加密技术都是基于具有挑战性的椭圆曲线离散对数和复因式分解。然而,在足够大规模的量子计算机的帮助下,这两个难题可以得到有效解决。后量子密码学(PQC)旨在应对拥有大规模量子计算机的攻击者。因此,必须建立一种稳健、安全的加密算法,以对抗最脆弱的前量子加密方法。这就是所谓的 "后量子密码学"。因此,目前的密码系统需要提出非常大的加密密钥和签名大小。此外,还需要仔细预测加密/解密时间和通信线路上的流量。后量子密码学(PQC)文章讨论了不同系列的后量子密码系统,分析了美国国家标准与技术研究院(NIST)后量子密码学标准化进程的现状,并探讨了后量子密码学界面临的困难。
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A Survey about Post Quantum Cryptography Methods
Cryptography is an art of hiding the significant data or information with some other codes. It is a practice and study of securing information and communication. Thus, cryptography prevents third party intervention over the data communication. The cryptography technology transforms the data into some other form to enhance security and robustness against the attacks. The thrust of enhancing the security among data transfer has been emerged ever since the need of Artificial Intelligence field came into a market. Therefore, modern way of computing cryptographic algorithm came into practice such as AES, 3DES, RSA, Diffie-Hellman and ECC. These public-key encryption techniques now in use are based on challenging discrete logarithms for elliptic curves and complex factorization. However, those two difficult problems can be effectively solved with the help of sufficient large-scale quantum computer. The Post Quantum Cryptography (PQC) aims to deal with an attacker who has a large-scale quantum computer. Therefore, it is essential to build a robust and secure cryptography algorithm against most vulnerable pre-quantum cryptography methods. That is called ‘Post Quantum Cryptography’. Therefore, the present crypto system needs to propose encryption key and signature size is very large.in addition to careful prediction of encryption/decryption time and amount of traffic over the communication wire is required. The post-quantum cryptography (PQC) article discusses different families of post-quantum cryptosystems, analyses the current status of the National Institute of Standards and Technology (NIST) post-quantum cryptography standardisation process, and looks at the difficulties faced by the PQC community.
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