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Design of a Hummingbird Crypto Core implementing BIST technique

机译:设计BIST技术的蜂鸟加密核心设计

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In recent years, lightweight cryptography which focuses on designing new cryptographic primitives with small hardware footprint and with low average and peak power consumption, has received a lot of attention. Hummingbird, an ultra-lightweight cryptographic algorithm has been developed both with lightweight software and lightweight hardware implementations keeping resource-constrained devices in mind. In this paper, we describe FPGA implementation with both software simulation as well as HW implementation of Hummingbird algorithm on Altera Platform. Moreover, testability of a complex chip is of prime concern now a days. Built-In-Self-Test (BIST) is a widely accepted approach for this purpose. In this paper design of a Hummingbird Crypto Core implementing BIST technique is proposed and both software and hardware implementation is performed. Here LFSR is used as pseudorandom test pattern generator and Signature Analysis is used as a Data Compression Technique. The proposed Crypto Core is simulated in Quartus II simulation software for the Altera Cyclone II family device as well as hardware implementation done in Altera DE2 board and performance is analyzed and compared with the other research works on Hummingbird implementation.
机译:近年来,轻量级密码专注于设计具有小硬件占地面积的新加密基元以及低平均和峰值功耗,收到了很多关注。 HummingBird,一种超轻重量加密算法,具有轻量级软件和轻量级硬件实现,可记住资源受限的设备。在本文中,我们使用软件仿真描述了FPGA实现以及Altera平台上的HumingBird算法的HW实现。此外,复杂芯片的可测试性现在是初始关注的一天。自检(BIST)是一个广泛接受的方法,以此目的。在本文的本文中,提出了一种实现BIST技术的蜂鸟加密核心,并执行软件和硬件实现。这里使用LFSR作为伪随机测试模式发生器,并且签名分析用作数据压缩技术。所提出的Crypto核心是在Quartus II仿真软件中模拟的,用于Altera Cyclone II家族设备,以及在Altera DE2板上完成的硬件实现,并与蜂鸟实施的其他研究工作进行了分析。

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