少量轻量级分组密码的高效硬件实现

Ali Nemati, S. Feizi, A. Ahmadi, Saeed Haghiri, M. Ahmadi, S. Alirezaee
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引用次数: 8

摘要

射频识别技术(RFID)正逐渐成为我们日常生活的一部分,在产品标签、供应链管理等方面有着广泛的应用。这些智能和微型设备在面积、计算能力、内存和功率方面的资源极其有限。与此同时,安全和隐私问题仍然是一个重要的问题,因此随着低资源设备的大量部署,越来越需要在这些设备之间提供安全和隐私。资源高效的加密初期成为在受限环境和嵌入式系统(如RFID标签和传感器节点)中实现安全和效率的基础。在这些原语中,轻量级分组密码作为安全系统的构建块起着重要的作用。2014年Manoj Kumar等人提出了一种新的轻量级分组密码,命名为FeW,它适用于极度受限的环境和嵌入式系统。本文对FeW分组密码进行了仿真和合成。给出了FeW密码算法在FPGA上的实现结果。设计目标是面积效益和成本效益。
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An efficient hardware implementation of few lightweight block cipher
Radio-frequency identification (RFID) are becoming a part of our everyday life with a wide range of applications such as labeling products and supply chain management and etc. These smart and tiny devices have extremely constrained resources in terms of area, computational abilities, memory, and power. At the same time, security and privacy issues remain as an important problem, thus with the large deployment of low resource devices, increasing need to provide security and privacy among such devices, has arisen. Resource-efficient cryptographic incipient become basic for realizing both security and efficiency in constrained environments and embedded systems like RFID tags and sensor nodes. Among those primitives, lightweight block cipher plays a significant role as a building block for security systems. In 2014 Manoj Kumar et al proposed a new Lightweight block cipher named as FeW, which are suitable for extremely constrained environments and embedded systems. In this paper, we simulate and synthesize the FeW block cipher. Implementation results of the FeW cryptography algorithm on a FPGA are presented. The design target is efficiency of area and cost.
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