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AES加密算法在AP中的设计和实现

The Design and Realization of AES Algorithm in AP

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【作者】 夏劲伟高俊芳曹秀英吕俊怀

【Author】 Xia Jinwei1,3, Gao Junfang2, Cao Xiuying3, Lv Junhuai1 (1. School Of Computer Science & Technology, Xuzhou Normal University, Xuzhou 221118, China; 2. Xuzhou Normal University Libraries, Xuzhou 221118, China; 3. National Mobile Communication Research Laboratory, Southeast University, Nanjing 210096, China)

【机构】 徐州师范大学计算机科学与技术学院徐州师范大学图书馆东南大学移动通信国家重点实验室徐州师范大学计算机科学与技术学院 江苏徐州221116 东南大学移动通信国家重点实验室江苏南京210096江苏徐州221116江苏南京210096

【摘要】 随着无线局域网(WLAN)的发展,其信息的安全也越来越受重视。AES作为无线局域网通信协议的核心加密算法,如何用硬件实现并应用在通信产品中尤为重要。文中在概述了AES(高级加密标准)算法基本原理的基础上,以FPGA为硬件平台,Altera公司的QuartusII为工具,设计了AES加密算法在AP(AccessPoint)中的硬件实现。实现了AES加密解密电路的顺序循环方式和两级流水线方式设计,并对这两种实现方式进行了比较。结果表明采用流水线方式设计虽然增加了资源消耗,但是明显的提高了速度。

【Abstract】 With the development of WLAN, more attention is paid to information security. How to apply AES, a kernel encryption algorithm of WLAN communication protocols, in communication products with hardware realization is of great importance. Taking PFGA as hardware desktop and making use of Quartus II of Altera company as tools, the author designs hardware realization of AES encrypt algorithm in AP (Access Point) based on the algorithm principle theory of AES (Advanced Encryption Standard). Two kinds of AES encryption and decryption circuit are designed: one being sequence cycle fashion, another being 2 stages of pipeline. This paper also compares them. Results indicate that using pipelining structure increases resource consumption but generally provides higher throughput.

【关键词】 AESFPGA流水线吞吐量
【Key words】 AESFPGApipelinethrougput
  • 【分类号】TP309.7
  • 【被引频次】4
  • 【下载频次】140
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