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PHACK: An Efficient Scheme for Selective Forwarding Attack Detection in WSNs

机译:PHACK:WSN中选择性转发攻击检测的有效方案

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摘要

In this paper, a Per-Hop Acknowledgement (PHACK)-based scheme is proposed for each packet transmission to detect selective forwarding attacks. In our scheme, the sink and each node along the forwarding path generate an acknowledgement (ACK) message for each received packet to confirm the normal packet transmission. The scheme, in which each ACK is returned to the source node along a different routing path, can significantly increase the resilience against attacks because it prevents an attacker from compromising nodes in the return routing path, which can otherwise interrupt the return of nodes’ ACK packets. For this case, the PHACK scheme also has better potential to detect abnormal packet loss and identify suspect nodes as well as better resilience against attacks. Another pivotal issue is the network lifetime of the PHACK scheme, as it generates more acknowledgements than previous ACK-based schemes. We demonstrate that the network lifetime of the PHACK scheme is not lower than that of other ACK-based schemes because the scheme just increases the energy consumption in non-hotspot areas and does not increase the energy consumption in hotspot areas. Moreover, the PHACK scheme greatly simplifies the protocol and is easy to implement. Both theoretical and simulation results are given to demonstrate the effectiveness of the proposed scheme in terms of high detection probability and the ability to identify suspect nodes.
机译:本文针对每个分组传输提出了一种基于逐跳确认(PHACK)的方案,以检测选择性转发攻击。在我们的方案中,接收器和转发路径上的每个节点都会为每个接收到的数据包生成确认(ACK)消息,以确认正常的数据包传输。通过将每个ACK沿着不同的路由路径返回到源节点的方案,可以显着提高抵御攻击的能力,因为它可以防止攻击者破坏返回路由路径中的节点,否则可能会中断节点的ACK的返回。包。对于这种情况,PHACK方案还具有检测异常数据包丢失和识别可疑节点的更好潜力,以及更好的抵御攻击能力。另一个关键问题是PHACK方案的网络寿命,因为它比以前的基于ACK的方案产生更多的确认。我们证明了PHACK方案的网络寿命不低于其他基于ACK的方案,因为该方案只会增加非热点区域的能耗,而不会增加热点区域的能耗。而且,PHACK方案大大简化了协议并且易于实现。理论和仿真结果均以高检测概率和识别可疑节点的能力证明了该方案的有效性。

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