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SEPAR: A New Lightweight Hybrid Encryption Algorithm with a Novel Design Approach for IoT

机译:分离:一种新的轻量混合加密算法,具有新颖的IOT设计方法

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This paper presents a new hybrid encryption algorithm with 16-bit block size and a 128-bit initialization vector, referred to as SEPAR, and it is suitable for IoT devices. The design idea of this algorithm combines pseudorandom permutation and pseudorandom generator functions. This smart integration causes resistance improvement against common cryptographic attacks meanwhile leads to cipher speed increment. Investigation of security analysis on the algorithm and results of the NIST statistical test suit proves its resistance against common cryptographic attacks as linear and differential cryptanalysis. Furthermore, efficient software implementation of SEPAR is presented on 8, 16 and 32-bit platforms. Compared to BORON cipher, SEPAR provides 42.22% throughput improvement on 32-bit ARM CPU. Also, for 8-bit and 16-bit microcontroller, SEPAR provides 87.91% and 98.01% performance improvements compared to present, respectively.
机译:本文提出了一种具有16位块大小的新的混合加密算法和128位初始化向量,称为SELP,它适用于IOT设备。 该算法的设计思想结合了伪随机置换和伪随机发生器功能。 这种智能集成导致对常见密码攻击的阻力改善,同时导致密码增量。 NIST统计试验套装算法安全分析的调查证明了其对常见密码攻击的抵抗作为线性和差异密码分析。 此外,在8,16和32位平台上呈现了高效的软件实现。 与硼密码相比,分离为32位ARM CPU提供42.22%的吞吐量改进。 此外,对于8位和16位微控制器,分别为87.91%和98.01%的性能改善分别与现在相比。

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