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CompactRIO Based Real Time Implementation of AES Algorithm for Embedded Applications

机译:基于CompactRIO的嵌入式应用AES算法的实时实现。

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摘要

For real-time embedded applications, several factors (time, cost, power) that are moving security considerations from a function-centric perspective into a system architecture (hardware/software) design issue. The National Institute of Standards and Technology (NIST) adopts Advanced Encryption Standard (AES) as the most widely used encryption algorithm in many security applications. The AES algorithm specifies 10, 12 and 14 rounds offering different levels of security. Although the number of rounds determines the strength of security, the power consumption issue has risen recently, especially in real-time embedded systems. In this article, the authors present real time implementation of the AES encryption on the compactRIO platform for a different number of AES rounds. The target hardware is NI cRIO-9022 embedded real-time controller from National Instruments (NI). The real time encryption processing has been verified successfully. The power consumption and encryption time experimental results are presented graphically for 10, 12 and 14 rounds of processing.
机译:对于实时嵌入式应用程序,有几个因素(时间,成本,功率)将安全性考虑从以功能为中心的角度转移到系统架构(硬件/软件)设计问题中。美国国家标准技术研究院(NIST)采用高级加密标准(AES)作为许多安全应用程序中使用最广泛的加密算法。 AES算法指定提供不同级别安全性的10、12和14轮攻击。尽管回合的数量决定了安全性的强弱,但是功耗问题近来已经出现,特别是在实时嵌入式系统中。在本文中,作者介绍了CompactRIO平台上针对不同数量AES轮次的AES加密的实时实现。目标硬件是美国国家仪器(NI)的NI cRIO-9022嵌入式实时控制器。实时加密处理已成功验证。以图形方式显示了10、12和14轮处理的功耗和加密时间实验结果。

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