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Mitigating Stealthy Jamming Attacks in Low-power and Lossy Wireless Networks

机译:缓解低功耗有损无线网络中的隐形干扰攻击

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Jamming in wireless networks has advanced to be more stealthy and long-lasting with limited energy. Stealthy attackers transmit short jamming signals to become less detectable with less energy, and yet powerful enough to ruin entire packet transmission procedures. In this article, we deal with three types of stealthy attacks: 'Reactive jamming', 'Jamming ACK', and 'Fake ACK' attacks. These attacks are fatal to low-power and lossy wireless network (LLN) applications because they not only interfere with communication, but also cause LLN devices to quickly drain their batteries. To counter these attacks, we present Dodge-Jam, a lightweight anti-jamming technique suitable for LLN environments to address the stealthy jamming attacks. It protects ACK packet by switching the ACK exchange channel to a channel calculated based on the content of a data packet. Moreover, by partitioning a packet into multiple blocks and performing logical shifts of the blocks when retransmitting the packet, it helps the receiver recover the original packet from received multiple erroneous packets. We implement Dodge-Jam on practical embedded devices, and evaluate its performance through mathematical analysis and experiments on a multi-hop LLN testbed. Our results show that Dodge-Jam successfully avoids many stealthy jamming attacks, recovers jammed packets, and significantly improves packet delivery performance of single-hop and multi-hop networks with small overhead. (1)
机译:无线网络中的干扰已发展为更加隐秘且持久且能量有限。隐身攻击者发送短干扰信号,以更少的能量变得难以检测,但强大到足以破坏整个数据包传输过程。在本文中,我们将处理三种类型的隐身攻击:“反应式干扰”,“干扰ACK”和“假ACK”攻击。这些攻击对于低功耗和有损无线网络(LLN)应用是致命的,因为它们不仅会干扰通信,还会使LLN设备迅速耗尽电池电量。为了应对这些攻击,我们提出了Dodge-Jam,这是一种轻量级的抗干扰技术,适用于LLN环境,以解决隐形干扰。它通过将ACK交换通道切换到基于数据包内容计算出的通道来保护ACK包。而且,通过将分组划分为多个块并在重发分组时执行块的逻辑移位,这有助于接收器从接收到的多个错误分组中恢复原始分组。我们在实际的嵌入式设备上实施Dodge-Jam,并通过数学分析和在多跳LLN测试床上进行实验来评估其性能。我们的结果表明,Dodge-Jam成功地避免了许多隐形干扰攻击,恢复了被阻塞的数据包,并以较小的开销显着提高了单跳和多跳网络的数据包传递性能。 (1)

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