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首页> 外文期刊>IEEE transactions on wireless communications >Proactive Eavesdropping via Cognitive Jamming in Fading Channels
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Proactive Eavesdropping via Cognitive Jamming in Fading Channels

机译:通过衰落信道中的认知干扰进行主动窃听

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To enhance the national security, there is a growing need for authorized parties to legitimately monitor suspicious communication links for preventing intended crimes and terror attacks. In this paper, we propose a new wireless information surveillance paradigm by investigating a scenario, where a legitimate monitor aims to intercept a suspicious wireless link over fading channels. The legitimate monitor can successfully eavesdrop (decode) the information of the suspicious link at each fading state only when its achievable data rate is no smaller than that at the suspicious receiver. We propose a new approach, namely, proactive eavesdropping via cognitive jamming, in which the legitimate monitor purposely jams the receiver in a full-duplex mode so as to change the suspicious communication (e.g., to a smaller data rate) for overhearing more efficiently. By assuming perfect self-interference cancelation (SIC) and global channel state information (CSI) at the legitimate monitor, we characterize the fundamental information-theoretic limits of proactive eavesdropping. We consider both delay-sensitive and delay-tolerant applications for the suspicious communication, under which the legitimate monitor maximizes the eavesdropping non-outage probability (for event-based monitoring) and the relative eavesdropping rate (for content analysis), respectively, by optimizing the jamming power allocation over different fading states subject to an average power constraint. Numerical results show that the proposed proactive eavesdropping via cognitive jamming approach greatly outperforms other benchmark schemes. Furthermore, by extending to a more practical scenario with residual SI and local CSI, we design an efficient online cognitive jamming scheme inspired by the optimal cognitive jamming with perfect SIC and global CSI.
机译:为了增强国家安全,越来越需要授权方合法地监视可疑的通信链接,以防止预期的犯罪和恐怖袭击。在本文中,我们通过研究一种情况来提出一种新的无线信息监视范式,在这种情况下,合法的监视程序旨在拦截衰落信道上的可疑无线链接。仅当合法监控器可达到的数据速率不小于可疑接收器的数据速率时,它才能在每个衰落状态下成功窃听(解码)可疑链路的信息。我们提出了一种新方法,即通过认知干扰进行主动窃听,在这种方法中,合法监视器故意以全双工模式干扰接收器,以便将可疑通信(例如更改为较小的数据速率)以更有效地进行监听。通过在合法监视器上假设完美的自干扰消除(SIC)和全局信道状态信息(CSI),我们描述了主动监听的基本信息理论极限。对于可疑通信,我们同时考虑了延迟敏感和延迟容忍的应用程序,在这些应用程序下,合法监视器通过优化来分别最大化窃听非中断概率(用于基于事件的监视)和相对窃听率(用于内容分析)。受平均功率约束的不同衰落状态下的干扰功率分配。数值结果表明,所提出的通过认知干扰的主动监听技术大大优于其他基准方案。此外,通过使用残差SI和局部CSI扩展到更实际的情况,我们设计了一种有效的在线认知干扰方案,该方案受具有理想SIC和全局CSI的最佳认知干扰的启发。

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