Security-aware channel assignment in IoT-based cognitive radio networks for time-critical applications

H. Salameh, Sufyan Almajali, M. Ayyash, H. Elgala
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引用次数: 26

Abstract

Cognitive radio networks (CRNs) have a great potential in supporting time-critical data delivery among the Internet of Things (IoT) devices and for emerging applications such as smart cities. However, the unique characteristics of different technologies and shared radio operating environment can significantly impact network availability. Hence, in this paper, we study the channel assignment problem in time-critical IoT-based CRNs under proactive jamming attacks. Specifically, we propose a probabilistic spectrum assignment algorithm that aims at minimizing the packet invalidity ratio of each cognitive radio (CR) transmission subject to delay constrains. We exploit the statistical information of licensed users' activities, fading conditions, and jamming attacks over idle channels. Simulation results indicate that network performance can be significantly improved by using a security- availability- and quality-aware channel assignment that provides communicating CR pair with the most secured channel of the lowest invalidity ratio.
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时间关键应用中基于物联网的认知无线网络的安全感知信道分配
认知无线网络(crn)在支持物联网(IoT)设备之间的时间关键型数据传输以及智能城市等新兴应用方面具有巨大潜力。然而,不同技术的独特特性和共享的无线电操作环境会显著影响网络的可用性。因此,在本文中,我们研究了主动干扰攻击下基于时间临界物联网crn的信道分配问题。具体来说,我们提出了一种概率频谱分配算法,其目标是在时延约束下最小化每个认知无线电(CR)传输的数据包无效率。我们利用许可用户的活动、衰落条件和空闲信道上的干扰攻击的统计信息。仿真结果表明,采用安全可用性和质量敏感的信道分配方式,为通信CR对提供最低无效率的最安全信道,可以显著提高网络性能。
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