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Jamming-Assisted Eavesdropping Over Parallel Fading Channels

机译:并行衰落通道上的干扰辅助窃听

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Unlike passive eavesdropping, proactive eavesdropping is recently proposed to use jamming to moderate a suspicious link's communication rate for facilitating simultaneous eavesdropping. This paper advances the proactive eavesdropping research by considering a practical half-duplex mode for the legitimate monitor (e.g., a government agency) and dealing with the challenging case that the suspicious link opportunistically communicates over parallel fading channels. To increase eavesdropping success probability, we propose cognitive jamming for the monitor to change the suspicious link's long-term belief on the parallel channels' distributions and thereby induce it to transmit more likely over a smaller subset of unjammed channels with a lower transmission rate. As the half-duplex monitor cannot eavesdrop the channel that it is simultaneously jamming to, our jamming design should also control the probability of such "own goal" that occurs when the suspicious link chooses one of the jammed (uneavesdroppable) channels to transmit. We formulate the optimal jamming design problem as a mixed integer nonlinear programming (MINLP) and show that it is non-convex. Nevertheless, we prove that the monitor should optimally use the maximum jamming power if it decides to jam, for maximally reducing the suspicious link's communication rate and driving the suspicious link out of the jammed channels. Then we manage to simplify the MINLP to integer programming and reveal a fundamental trade-off in deciding the number of jammed channels: jamming more channels helps reduce the suspicious link's communication rate for overhearing more clearly but increases own goal probability and thus decreases eavesdropping success probability. Finally, we extend our study to the two-way suspicious communication scenario and show that there is another interesting trade-off in deciding the common jammed channels for balancing bidirectional eavesdropping performances. Numerical results show that our optimized jamming-assisted eavesdropping schemes greatly increase eavesdropping success probability as compared with the conventional passive eavesdropping.
机译:与被动窃听不同,近来提出了主动窃听以使用干扰来调节可疑链接的通信速率,以促进同时窃听。本文通过为合法监控器(例如政府机构)考虑实用的半双工模式并处理可疑链接在并行衰落信道上机会性通信的挑战性案例,来推进主动窃听研究。为了增加窃听成功的可能性,我们建议监视器进行认知干扰,以更改可疑链接对并行通道分布的长期信念,从而诱使它在较小的无干扰通道子集中以较低的传输速率进行传输。由于半双工监视器无法窃听其同时干扰的信道,因此,我们的干扰设计还应控制可疑链路选择阻塞的(不可窃听的)信道之一进行传输时发生“自己的目标”的可能性。 。我们将最优干扰设计问题公式化为混合整数非线性规划(MINLP),并证明它是非凸的。但是,我们证明了如果监视器决定阻塞,则监视器应该最佳地使用最大的阻塞功率,以最大程度地降低可疑链接的通信速率并将可疑链接赶出阻塞的信道。然后,我们设法将MINLP简化为整数编程,并在确定阻塞信道的数量时揭示了一个基本的权衡:阻塞更多信道有助于降低可疑链接的通信速率,以便更清晰地窃听,但增加了自己的目标概率,从而降低了窃听成功的概率。最后,我们将研究扩展到双向可疑通信场景,并表明在确定用于平衡双向窃听性能的公共干扰信道时,还有另一个有趣的折衷。数值结果表明,与传统的被动式窃听相比,我们优化的干扰辅助式窃听方案极大地提高了窃听成功率。

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