Energy Consumption Analysis in Post Quantum Cryptography Using Multivariate Signature Algorithms

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Abstract

Classical cryptographic schemes in use today are based on the difficulty of certain number theoretic problems. Security is guaranteed by the fact that the computational work required to break the core mechanisms of these schemes on a conventional computer is infeasible; however, the difficulty of these problems would not withstand the computational power of a large-scale quantum computer. To this end, the post-quantum cryptography (PQC) standardization process initiated by the National Institute of Standards and Technology (NIST) is well underway. In this paper, the energy consumption of PQC measurements are categorized based on their proposed cryptographic functionality. The results are used in order to identify the most energy-efficient schemes.
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基于多元签名算法的后量子密码的能量消耗分析
目前使用的经典密码方案是基于某些数论问题的难度。在传统计算机上破解这些方案的核心机制所需的计算工作是不可行的,这一事实保证了安全性;然而,这些问题的难度无法承受大规模量子计算机的计算能力。为此,由美国国家标准与技术研究院(NIST)发起的后量子密码学(PQC)标准化进程正在顺利进行。在本文中,PQC测量的能源消耗是基于他们提出的加密功能分类。这些结果被用来确定最节能的方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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