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首页> 外文期刊>IEEE Transactions on Sustainable Computing >Resource Shared Galois Field Computation for Energy Efficient AES/CRC in IoT Applications
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Resource Shared Galois Field Computation for Energy Efficient AES/CRC in IoT Applications

机译:资源共享IOT应用中节能AES / CRC的Galois现场计算

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摘要

End-to-end encryption and reliability of the transmitted data are essential requirements in the present era of internet enabled smart devices. Adhering to current industry standards, the Advanced Encryption Standard (AES) and Cyclic Redundancy Check (CRC) are the two most utilized methods for ensuring security and reliability. To integrate AES and CRC functionality in ultra-low-power embedded System on Chips (SoCs), dedicated computation engines/co-processors are often used, consuming valuable silicon area and additional battery power. This paper presents the design of an energy-efficient multipurpose encryption engine capable of processing both AES and CRC algorithms using a shared Galois Field Computation Unit (GFCU). By decomposing the necessary Galois Field operations of AES and CRC to their fundamental binary steps, it was possible to identify shared operations in these two algorithms. This approach allowed the development of a resource shared system architecture capable of computing AES-128 and CRC-32 using a single computation unit. The GFCU based design was implemented in an area of 151μm × 151μm in 90nm technology node. The energy consumption of the design operating at 0.8 V supply voltage for a 25.6 Mbps throughput was less than 280pJ and 140pJ for AES-128 encryption and CRC-32, respectively.
机译:传输数据的端到端加密和可靠性是Internet的智能设备的现代时代的基本要求。遵守当前的行业标准,先进的加密标准(AES)和循环冗余校验(CRC)是一种用于确保安全性和可靠性的两个最具利用方法。为了在芯片(SOC)上的超低功耗嵌入式系统中集成AES和CRC功能,通常使用专用计算发动机/协处理器,消耗有价值的硅面积和额外的电池电量。本文介绍了能够使用共享Galois现场计算单元(GFCU)处理AES和CRC算法的节能多功能加密引擎的设计。通过将AES和CRC的必要的Galois现场操作分解到其基本二进制步骤,可以在这两个算法中识别共享操作。这种方法允许使用单个计算单元开发能够计算AES-128和CRC-32的资源共享系统架构。基于GFCU的设计在90nm技术节点中的151μm×151μm的面积中实现。为AES-128加密和CRC-32分别为25.6 Mbps吞吐量运行的设计以0.8V电源电压的电源电压的能耗分别小于280pj和140pj。

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