医疗物联网应用的高吞吐量现代密码硬件架构

Jamunarani Damodharan, Emalda Roslin Susai Michael, N. Shaikh-Husin
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引用次数: 1

摘要

物联网(IoT)是一种应用于农业、医疗保健、自动化和国防等各个领域的智能技术。现代医疗电子也是依赖物联网的一个领域。在智能设备之间的数据通信系统中,执行时间、数据安全、功耗和硬件利用率是需要解决的四个重要问题。由于实现算法复杂性的风险,某些密码不适合物联网应用。此外,物联网应用也在嵌入式平台上实现,计算资源和内存数量有限。在这里的研究工作中,一个可靠的轻量级加密算法已经实现了PRESENT作为硬件加速器,并针对医疗物联网嵌入式应用进行了优化。PRESENT密码在许多应用中是一种可靠、轻量级的加密算法。本文提出了一种具有高吞吐量的低延迟32位数据路径的PRESENT密码体系结构。所提出的硬件架构已在XILINX XC7Z030FBG676-2 ZYNQ FPGA板7000上实现和测试。这项工作显示吞吐量提高了大约85.54%,并且合理地权衡了硬件利用率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High Throughput PRESENT Cipher Hardware Architecture for the Medical IoT Applications
The Internet of Things (IoT) is an intelligent technology applied to various fields like agriculture, healthcare, automation, and defence. Modern medical electronics is also one such field that relies on IoT. Execution time, data security, power, and hardware utilization are the four significant problems that should be addressed in the data communication system between intelligent devices. Due to the risks in the implementation algorithm complexity, certain ciphers are unsuitable for IoT applications. In addition, IoT applications are also implemented on an embedded platform wherein computing resources and memory are limited in number. Here in the research work, a reliable lightweight encryption algorithm with PRESENT has been implemented as a hardware accelerator and optimized for medical IoT-embedded applications. The PRESENT cipher is a reliable, lightweight encryption algorithm in many applications. This paper presents a low latency 32-bit data path of PRESENT cipher architecture that provides high throughput. The proposed hardware architecture has been implemented and tested with XILINX XC7Z030FBG676-2 ZYNQ FPGA board 7000. This work shows an improvement of about 85.54% in throughput with a reasonable trade-off over hardware utilization.
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