后量子密码学驱动的云计算安全框架

IF 1.1 Q3 COMPUTER SCIENCE, THEORY & METHODS Open Computer Science Pub Date : 2022-01-01 DOI:10.1515/comp-2022-0235
H. C. Ukwuoma, A. J. Gabriel, A. Thompson, B. Alese
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引用次数: 3

摘要

摘要自云计算诞生和采用以来,云中的数据安全一直是一个主要问题。已经提出了各种框架,但数据泄露盛行。加密是云数据安全的主要方法,量子计算的出现意味着迫切需要提供一种模型,为经典计算和量子计算提供足够的数据安全。因此,大多数密码系统将变得易受影响和过时,尽管一些密码系统将经得起量子计算的考验。这篇文章提出了一个模型,其中包括McEliece密码系统的变体的应用,该变体已被认为将取代量子计算时代的Rivest–Shamir–Adleman(RSA)来保护访问控制数据,以及N次截断多项式环单元(NTRU)密码系统的变种来保护云用户数据。对所提出的McEliece算法的仿真表明,该算法比现有的McEliess密码系统具有更好的时间复杂度。此外,对参数S和P的新颖调整进一步提高了所提出算法的安全性。更重要的是,对所提出的NTRU算法的仿真表明,现有的NTRU密码系统与所提出的NT RU密码系统并列时具有优越的时间复杂性。
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Post-quantum cryptography-driven security framework for cloud computing
Abstract Data security in the cloud has been a major issue since the inception and adoption of cloud computing. Various frameworks have been proposed, and yet data breach prevails. With encryption being the dominant method of cloud data security, the advent of quantum computing implies an urgent need to proffer a model that will provide adequate data security for both classical and quantum computing. Thus, most cryptosystems will be rendered susceptible and obsolete, though some cryptosystems will stand the test of quantum computing. The article proposes a model that comprises the application of a variant of McEliece cryptosystem, which has been tipped to replace Rivest–Shamir–Adleman (RSA) in the quantum computing era to secure access control data and the application of a variant of N-th degree truncated polynomial ring units (NTRU) cryptosystem to secure cloud user data. The simulation of the proposed McEliece algorithm showed that the algorithm has a better time complexity than the existing McEliece cryptosystem. Furthermore, the novel tweaking of parameters S and P further improves the security of the proposed algorithms. More so, the simulation of the proposed NTRU algorithm revealed that the existing NTRU cryptosystem had a superior time complexity when juxtaposed with the proposed NTRU cryptosystem.
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来源期刊
Open Computer Science
Open Computer Science COMPUTER SCIENCE, THEORY & METHODS-
CiteScore
4.00
自引率
0.00%
发文量
24
审稿时长
25 weeks
期刊最新文献
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