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Detection of dynamic location primary user emulation on mobile cognitive radio networks using USRP

机译:使用USRP检测移动认知无线电网络上的动态位置主用户仿真

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摘要

Abstract The study and the detection of possible network attacks are essential for wireless networks, in particular for mobile cognitive radio networks due to its characteristics such as the dynamic spectrum allocation and constant frequency hopping. The primary user emulation attack is one of the most significant attacks in cognitive radio, because it hazards the complete cognitive cycle. The techniques used for the detection of primary user emulation found in the literature are based on a fixed attacker location. However, in a mobile environment, the attacker usually has dynamic locations and this compromises the current applied security techniques and generates inefficient attack detection. Therefore, our work proposes a novel technique using cross-layer design for the detection of primary user emulation with mobility. This attack detection technique was tested with experiments using software-defined radio equipment and mobile phones at indoor scenarios with dynamic locations and with a mobile phone base station built up also with software-defined radio. The obtained results show that the combination of the three utilized techniques, energy detection, motion estimation, and application information analysis, are able to optimize the detection with around 100% of effectiveness for the primary user emulation attack with dynamic location. The proposed technique shows that the energy detection time is around 100 ms and for the processing time of the information analysis in the mobile phone is about 30 s. This result shows a practical and effective approach to detect primary emulation attacks. The proposed technique, to the best of the authors’ knowledge, has not been presented before in the literature with experiments neither with mobility conditions of the attacker as presented in our proposed work.
机译:摘要研究和可能的网络攻击的检测是用于无线网络的必不可少的,特别是用于移动认知无线电网络由于其特性,如动态频谱分配和恒定跳频。主要用户仿真攻击是认知无线电最显著的攻击之一,因为它危害整个认知周期。用于检测在文献中找到主用户仿真的技术是基于一个固定的攻击者的位置。然而,在移动环境中,攻击者通常具有的动态位置,这损害了当前应用的安全技术,并产生低效的攻击检测。因此,我们的工作提出了使用跨层设计用于检测与移动性主用户的仿真的新颖技术。这种攻击检测技术与使用软件定义的无线电设备和移动电话在与动态位置的室内场景,并建立也与软件定义无线电移动电话基站的实验测试。将所得到的结果表明,三个利用技术中,能量检测,运动估计,和应用信息的分析相结合,能够与大约100%的有效性的,以优化检测用于与动态位置的主要用户仿真攻击。所提出的技术显示,所述能量检测的时间大约是100毫秒和对于在移动电话中的信息的分析的处理时间为约30秒。这一结果显示了一个实用而有效的方法来检测主要模拟攻击。所提出的技术,以最好的作者的知识,以前没有在我们提出的工作提出呈现在文献中既不用攻击的流动性条件下的实验。

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