A HES for Low Speed Processors

C. Chibaya, Viola Jubile Jowa, Taurayi Rupere
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Abstract

Adaptation of e-commerce in third world countries requires more secure computing facilities. Online data is vulnerable and susceptible to active attacks. Hundreds of security mechanisms and services have been proposed to curb this challenge. However, available security mechanisms, sufficiently strong, are heavy for the machines used. To secure online data where machines' processing power and memory are deficient, a Hybrid Encryption Standard (HES) is proposed. The HES is built on the Data Encryption Standard (DES) algorithm and its siblings. The component units of the DES are redesigned towards reduced demands for processing power and memory. Precisely, white box designs of IP tables, PC tables, Expansion tables, Rotation tables, S-boxes and P-boxes are proposed, all aimed at reducing the processing time and memory demands. Evaluation of the performance of the HES algorithm against the performance of the traditional DES algorithm reveal that the HES out-performs the DES with regards to speed, memory demands, and general acceptance by novice practitioners in the cryptography field. In addition, reproducibility and flexibility are attractive features of the HES over the DES.
A HES表示低速处理器
在第三世界国家适应电子商务需要更安全的计算设施。在线数据易受攻击,容易受到主动攻击。已经提出了数百种安全机制和服务来遏制这一挑战。然而,可用的足够强大的安全机制对于所使用的机器来说是沉重的。针对计算机处理能力和内存不足的情况,提出了一种混合加密标准(HES)。HES是建立在数据加密标准(DES)算法及其同类算法之上的。对DES的组件单元进行了重新设计,以减少对处理能力和内存的需求。准确地说,提出了IP表、PC表、扩展表、旋转表、s -box和p -box的白盒设计,目的都是为了减少处理时间和内存需求。将HES算法的性能与传统DES算法的性能进行评估后发现,HES在速度、内存需求和密码学领域新手的普遍接受度方面都优于DES。此外,再现性和灵活性是HES比DES更具吸引力的特点。
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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