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Fast-Forward Relaying Scheme to Mitigate Jamming Attacks by Full-Duplex Radios

机译:快速转发中继方案可缓解全双工无线电的干扰攻击

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In this work, we address reliable communication of low-latency packets in the presence of a full-duplex adversary that is capable of executing a jamming attack while also being able to measure the power levels on various frequency bands. Due to the presence of a strong adversary, first, we point out that traditional frequency-hopping does not help since unused frequency bands may not be available, and moreover, the victim’s transition between the frequency bands would be detected by the full-duplex adversary. Identifying these challenges, we propose a new cooperative mitigation strategy, referred to as the Semi-Coherent Fast-Forward Full-Duplex (SC-FFFD) relaying technique, wherein the victim node, upon switching to a new frequency band, seeks the assistance of its incumbent user, which is also a full-duplex radio, to instantaneously forward its messages to the destination using a portion of their powers. Meanwhile, the two nodes cooperatively use their residual powers on the jammed frequency band so as to engage the adversary to continue executing the jamming attack on the same band. Using on-off keying (OOK) and phase-shift-keying (PSK) as the modulation schemes at the victim and the helper node, respectively, we derive upper bounds on the probability of error of jointly decoding the information symbols of the two nodes, and subsequently derive analytical solutions to arrive at the power-splitting factor between the two frequency bands to minimize the error of both the nodes. We also present extensive simulation results for various signal-to- noise-ratio values and PSK constellations to showcase the efficacy of the proposed approach.
机译:在这项工作中,我们解决了在存在全双工对手的情况下低延迟数据包的可靠通信的问题,该对手能够执行干扰攻击,同时还能够测量各个频带上的功率水平。由于存在强大的对手,首先,我们指出传统的跳频没有帮助,因为未使用的频段可能不可用,此外,全双工对手会检测到受害者在频段之间的过渡。为确定这些挑战,我们提出了一种新的协作缓解策略,称为半相干快进全双工(SC-FFFD)中继技术,其中,受害节点在切换到新频段时会寻求以下方面的帮助:它的现用用户(也是全双工无线电设备)使用其一部分功率将其消息立即转发到目的地。同时,两个节点在阻塞的频带上协同使用它们的剩余功率,以使对手与之继续在相同频带上执行阻塞攻击。分别使用开关键控(OOK)和相移键控(PSK)作为受害节点和辅助节点上的调制方案,我们得出联合解码两个节点的信息符号的错误概率的上限,然后得出解析解,以得出两个频带之间的功率分配因数,以最小化两个节点的误差。我们还针对各种信噪比值和PSK星座图提供了广泛的仿真结果,以展示所提出方法的有效性。

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