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Efficient FPGA implementation of AES 128 bit for IEEE 802.16e mobile WiMax standards

机译:针对IEEE 802.16e移动WiMax标准的AES 128位的高效FPGA实现

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In an advancement of communication field, wireless technology plays a predominant role in data transmission. In the timeline of wireless domain, Wi-Fi, Bluetooth, zigbee etc are some of the standards, which are being used in today’s wireless medium. In addition, the WiMax is introduced by IEEE in IEEE 802.16 for long distance communication, specifically 802.16e standard for mobile WiMax. It is an acronym of Worldwide Interoperability for Microwave Access. It is to be deliver wireless transmission with high quality of service in a secured environment. Since, security becomes dominant design aspect of every communication, a new technique has been proposed in wireless environment. Privacy across the network and access control management is the goal in the predominant aspects in the WiMax protocol. Especially, MAC sub layer should be evaluated in the security architecture. It has been proposed on cryptography algorithm AES that require high cost. Under this scenario, we present the optimized AES 128 bit counter mode security algorithm for MAC layer of 802.16e standards. To design a efficient MAC layer, we adopt the modification of security layers data handling process. As per the efficient design strategy, the power and speed are the dominant factors in mobile device. Since we concentrate mobile WiMax, efficient design is needed for MAC Security layer. Our proposed model incorporates the modification of AES algorithm. The design has been implemented in Xilinx virtex5 device and power has been analyzed using XPower analyzer. This proposed system consumes 41% less power compare to existing system.
机译:在通信领域的发展中,无线技术在数据传输中起主要作用。在无线领域的时间表中,Wi-Fi,蓝牙,zigbee等是其中的一些标准,它们已在当今的无线媒体中使用。此外,WiMax是由IEEE在IEEE 802.16中引入的,用于长距离通信,特别是针对移动WiMax的802.16e标准。它是“微波访问的全球互操作性”的首字母缩写。它将在安全的环境中提供具有高服务质量的无线传输。由于安全性成为每种通信的主要设计方面,因此在无线环境中提出了一种新技术。整个网络的隐私和访问控制管理是WiMax协议主要方面的目标。特别是,MAC子层应在安全体系结构中进行评估。已经提出了要求高成本的密码算法AES。在这种情况下,我们为802.16e标准的MAC层提供了优化的AES 128位计数器模式安全算法。为了设计有效的MAC层,我们采用了对安全层数据处理过程的修改。按照高效的设计策略,功率和速度是移动设备的主要因素。由于我们专注于移动WiMax,因此MAC安全层需要高效的设计。我们提出的模型结合了AES算法的修改。该设计已在Xilinx virtex5器件中实现,并且已使用XPower分析仪分析了电源。与现有系统相比,该拟议系统的功耗降低了41%。

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