公平感知子载波分配以对抗物联网中全双工窃听和干扰攻击

Bhawna Ahuja, Deepak Mishra, R. Bose
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引用次数: 2

摘要

为了解决物联网(IoT)等先进通信网络中日益增长的安全问题,本工作旨在提出一种优化框架,用于公平分配子载波以应对全双工(FD)攻击者。我们首先分析了多用户物联网系统中针对具有并发窃听和干扰能力的FD混合攻击者的安全通信性能。具体地说,在考虑不完全信息的情况下,推导了包括自干扰链路、窃听和干扰链路在内的所有不受管制通信链路的精确截获概率的解析表达式。然后将子载波分配的优化问题表述为一个整数线性规划。最后,提出了一种低复杂度的次优解,以避免在实际中寻找问题的最优解需要大量的计算资源。数值结果验证了分析框架,报告在保密性能方面比相关基准平均提高了25%以上。这表明,所提出的方案有可能有效地缓解物联网网络中安全可靠通信的保密中断。
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Fairness-aware Subcarrier Allocation to Combat full duplex Eavesdropping and Jamming attacks in IoT
To address the growing concern of security in advance communication networks like Internet of things (IoT), this work aims to propose an optimisation framework for fair subcarrier allocation to encounter a full duplex (FD) attacker. We first analyse the performance of secure communication in a multi-user IoT system against an FD hybrid attacker possessing the capability of concurrent eavesdropping and jamming. Specifically, a novel analytical expression has been derived for the exact intercept probability considering incomplete information of all ungoverned communication links that include self-interference link along with eavesdropping and jamming ones. The optimisation problem of subcarrier allocation is then formulated as an integer linear program. Finally, a low-complexity suboptimal solution is proposed to circumvent the need for high computational resources for finding the optimal solution to the problem in practice. Numerical results, validating the analytical framework, report the average improvement of more than 25% in secrecy performance over relevant benchmarks. This establishes that the proposed scheme has a potential to mitigate the secrecy outage efficiently for secure and reliable communication in IoT networks.
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