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Design and Implementation of Novel BRISI Lightweight Cipher for Resource Constrained Devices

机译:资源受限设备新型布里斯轻量级密码的设计与实现

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The Internet of Things (IoT) and cyber-physical systems (CPS) has grown exponentially over the recent years, has motivated the development and deployment of the low resource devices for a wide range of applications in the IoT. Many such resource constrained devices are deployed to match the heterogeneous application requirements of IoT and CPS systems, wherein privacy and security have emerged, as the most difficult challenges, as the constrained devices are not been designed to have security features. This paper presents a lightweight cipher, based on ARX (Addition-Modulo, Rotation and XOR) operations, Fiestel structure, an amalgamation of BRIGHT and SIMON structure, hence the name BRISI. The cipher encrypts 32-bit plaintext using 64-bit key. The software implementation is performed using MATLAB tool and it fulfils the Avalanche criterion, Key-sensitivity, correlation coefficient, entropy and histogram. The proposed design is simulated using Xilinx Vivado and is implemented on Nexys-4 DDR Artix-7 and Basys-3 Artix-7 FPGA family and is evaluated for (LUT and register) power and timing
机译:事物(物联网)和网络物理系统(CPS)在近年来中增长了互联网,有动力开发和部署低资源设备在IOT中的广泛应用。许多这样的资源受限设备部署以匹配物联网和CPS系统的异构应用要求,其中隐私和安全性被出现,作为最困难的挑战,因为未被设计为具有安全性功能。本文介绍了一种轻量级密码,基于ARX(添加 - 模,旋转和XOR)操作,Fiestel结构,明亮和西蒙结构的融合,因此是Brisi的名称。密码使用64位键加密32位明文。使用MATLAB工具执行软件实现,它符合雪崩标准,键灵敏度,相关系数,熵和直方图。使用Xilinx Vivado模拟所提出的设计,并在Nexys-4 DDR Artix-7和Basys-3 Artix-7 FPGA系列上实现,并评估(LUT和寄存器)功率和定时

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