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An Enhanced WLAN Security System With FPGA Implementation for Multimedia Applications

机译:具有FPGA实现的多媒体应用的增强型WLAN安全系统

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Maintaining a high level of data security with a low impact on system performance is more challenging in wireless multimedia applications. Protocols that are used for wireless local area network (WLAN) security are known to significantly degrade performance. In this paper, we propose an enhanced security system for a WLAN. Our new design aims to decrease the processing delay and increase both the speed and throughput of the system, thereby making it more efficient for multimedia applications. Our design is based on the idea of offloading computationally intensive encryption and authentication services to the end systems' CPUs. The security operations are performed by the hosts' central processor (which is usually a powerful processor) before delivering the data to a wireless card (which usually has a low-performance processor). By adopting this design, we show that both the delay and the jitter are significantly reduced. At the access point, we improve the performance of network processing hardware for real-time cryptographic processing by using a specialized processor implemented with field-programmable gate array technology. Furthermore, we use enhanced techniques to implement the Counter (CTR) Mode with Cipher Block Chaining Message Authentication Code Protocol (CCMP) and the CTR protocol. Our experiments show that it requires timing in the range of 20-40 μs to perform data encryption and authentication on different end-host CPUs (e.g., Intel Core i5, i7, and AMD 6-Core) as compared with 10-50 ms when performed using the wireless card. Furthermore, when compared with the standard WiFi protected access II (WPA2), results show that our proposed security system improved the speed to up to 3.7 times.
机译:在无线多媒体应用中,维持高水平的数据安全性而对系统性能的影响较小。已知用于无线局域网(WLAN)安全的协议会大大降低性能。在本文中,我们提出了一种用于WLAN的增强型安全系统。我们的新设计旨在减少处理延迟,并提高系统的速度和吞吐量,从而使其对于多媒体应用更为有效。我们的设计基于将计算密集型加密和身份验证服务卸载到最终系统的CPU的想法。安全操作由主机的中央处理器(通常是功能强大的处理器)执行,然后再将数据传递到无线卡(通常具有低性能的处理器)。通过采用这种设计,我们表明延迟和抖动都得到了显着降低。在接入点,我们通过使用采用现场可编程门阵列技术实现的专用处理器,提高了用于实时密码处理的网络处理硬件的性能。此外,我们使用增强的技术通过密码块链接消息验证码协议(CCMP)和CTR协议来实现计数器(CTR)模式。我们的实验表明,在不同的最终主机CPU(例如Intel Core i5,i7和AMD 6核)上执行数据加密和身份验证需要20-40 µs的时间,而在10-50 ms时需要10-50 ms。使用无线网卡执行。此外,与标准WiFi保护访问II(WPA2)相比,结果表明,我们提出的安全系统将速度提高了3.7倍。

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