Implementing the Lightweight mCrypton Algorithm in Hardware using FPGA

K. Venkatesan, Mohan Babu Bukya, Gasiganti Vidyasagar
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Abstract

The use of lightweight cryptography might be beneficial for low-power devices such as RFID tags, nodes in the Internet of Things, and nodes in wireless sensor network nodes. When developing a lightweight strategy, it is essential to take into consideration a cryptographic algorithm’s data storage requirements, processing speed, throughput, and energy consumption. Taking everything into consideration, the findings of this research provide a contemporary foundation for the effective lightweight cryptographic technology known as mCrypton. The restoration not only reduces the overall size of the common rooms but also boosts the efficiency of those spaces. FPGA boards manufactured by Xilinx, namely the Spartan 3, were used in the construction of the recommended design by ISE. The results of the simulation show that the proposed architecture is capable of functioning at a frequency of 302 MHz, accomplishing a amount of 646 Mbps, also accomplishing an efficacy of 1.7 Mbps/slice while using a entire of 0.089 W of power. Because of this, the proposed layout achieves superior results than those of its contemporaries in terms of the amount of space used, the energy consumption, the performance, and the throughput.
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用FPGA在硬件上实现轻量级mCrypton算法
轻量级加密的使用可能有利于低功耗设备,如RFID标签、物联网中的节点和无线传感器网络节点中的节点。在开发轻量级策略时,必须考虑加密算法的数据存储需求、处理速度、吞吐量和能耗。考虑到所有因素,这项研究的结果为称为mCrypton的有效轻量级加密技术提供了当代基础。修复不仅减少了公共休息室的整体尺寸,而且提高了这些空间的效率。由赛灵思制造的FPGA板,即Spartan 3,被用于ISE推荐设计的构建中。仿真结果表明,所提出的架构能够在302 MHz的频率下工作,实现646 Mbps的速率,并且在使用0.089 W的功耗下实现1.7 Mbps/片的效率。因此,所提出的布局在使用的空间量、能耗、性能和吞吐量方面都比同时代的布局取得了更好的结果。
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