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Efficient attack strategy for legitimate energy-powered eavesdropping in tactical cognitive radio networks

机译:战术认知无线电网络中用于合法能源驱动窃听的有效攻击策略

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摘要

The cognitive radio network (CRN) is not only considered a useful medium for users, but it is also an environment vulnerable to proactive attackers. This paper studies an attack strategy for a legitimate energy-constrained eavesdropper (e.g., a government agency) to efficiently capture the suspicious wireless communications (i.e., an adversary communications link) in the physical layer of a CRN in tactical wireless networks. Since it is powered by an energy harvesting device, a full-duplex active eavesdropper constrained by a limited energy budget can simultaneously capture data and interfere with the suspicious cognitive transmissions to maximize the achievable wiretap rate while minimizing the suspicious transmission rate over a Rayleigh fading channel. The cognitive user operation is modeled in a time-slotted fashion. In this paper, we formulate the problem of maximizing a legitimate attack performance by adopting the framework of a partially observable Markov decision process. The decision is determined based on the remaining energy and a belief regarding the licensed channel activity in each time slot. Particularly, in each time slot, the eavesdropper can perform an optimal action based on two functional modes: (1) passive eavesdropping (overhearing data without jamming) or (2) active eavesdropping (overhearing data with the optimal amount of jamming energy) to maximize the long-term benefit. We illustrate the optimal policy and compare the performance of the proposed scheme with that of conventional schemes where the decision for the current time slot is only considered to maximize its immediate reward.
机译:认知无线电网络(CRN)不仅被视为对用户有用的媒介,而且还是一个容易受到主动攻击者攻击的环境。本文研究了一种针对合法能源受限的窃听者(例如政府机构)的攻击策略,以有效地捕获战术无线网络中CRN物理层中的可疑无线通信(即对手通信链路)。由于它是由能量收集设备提供动力的,因此在有限的能量预算的约束下,全双工有源窃听者可以同时捕获数据并干扰可疑的认知传输,从而最大程度地提高窃听率,同时将瑞利衰落信道上的可疑传输率降至最低。认知用户操作以时隙方式建模。在本文中,我们通过采用部分可观察的马尔可夫决策过程的框架,提出了最大化合法攻击性能的问题。基于剩余能量和关于每个时隙中许可信道活动的信念来确定该决定。特别是,在每个时隙中,窃听者可以基于两种功能模式执行最佳操作:(1)被动窃听(无干扰地监听数据)或(2)主动窃听(具有最佳干扰能量的监听数据)以最大化长期利益。我们说明了最佳策略,并比较了所提出的方案与常规方案的性能,在常规方案中,仅考虑当前时隙的决策以最大化其即时回报。

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