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Implementation of Hardware Encryption Engine for Wireless Communication on A Reconfigurable Instruction Cell Architecture

机译:用于可重构指令小区架构上无线通信的硬件加密引擎的实现

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Security issues emerged in recent years as the fast development of wireless technology, especially for mobile devices where computing resources are sparse. This paper presents the implementation of RC4 as well as AES (Advanced Encryption Standard) cipher algorithm, which are widely used in IEEE 802.11 as well as IEEE 802.16 and other standards. The implementations target a novel Reconfigurable Instruction Cell Array (RICA) based architecture which has recently been developed [8], with the aim of achieving low power, high performance and programming flexibility. As our simulation result shows, RC4 stream cipher throughput achieves as high as 60 Mbps with 128 bits key size and 1024 bits data buffer packet. The AES algorithm has also been implemented on RICA, achieving a throughput of 55.6 Mbps with typical 128 bits key and 128 bits block size after optimization. Compared to commercial hardware encryption architecture of the same wireless application domain, our architecture exhibits superiority in several aspects.
机译:近年来出现了安全问题作为无线技术的快速发展,特别是对于计算资源稀疏的移动设备。本文介绍了RC4的实现以及AES(高级加密标准)密码算法,它广泛用于IEEE 802.11以及IEEE 802.16和其他标准。该实现针对最近开发的基于新的基于可重构的指令小区阵列(RICA)的架构[8],目的是实现低功耗,高性能和编程灵活性。随着我们的仿真结果表明,RC4流密码吞吐量高达60 Mbps,具有128位键尺寸和1024位数据缓冲区数据包。 AES算法还在RICS上实现,在优化之后实现了典型的128位键和128位块大小的55.6 Mbps的吞吐量。与同一无线应用域的商业硬件加密​​架构相比,我们的架构在若干方面表现出优势。

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