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Energy efficient outsider attacks on IEEE 802.15.4 beacon enabled wireless sensor networks

机译:对启用IEEE 802.15.4信标的无线传感器网络的高能效局外人攻击

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Wireless sensor networks based on the IEEE 802.15.4 standard have wide applications in office and industrial automation. Most of these networks utilize beacon enabled mode of operation due to the availability of sleep states which can extend the battery life. Wireless sensor nodes have little protection against radio interference and hence very susceptible to jamming. The situation becomes worse if energy-efficient jamming can be achieved by exploiting knowledge of the data link layer. While, encryption might help prevent the jammer from taking actions based on the content of the packets, the arrangement of the packets induced by the nature of the protocol can be exploited. By analyzing the packet interarrival times and lengths of packets, energy-efficient jamming can be performed. In this paper, we propose three jamming attacks based on learning the superframe structure and beacon interval in these networks. The algorithms are described in detail, simulated and the effectiveness and efficiency of the attacks are examined. The result of this paper provides new insights into the superframe structure and security considerations of beacon enabled mode of IEEE 802.15.4 MAC protocol.
机译:基于IEEE 802.15.4标准的无线传感器网络在办公室和工业自动化中具有广泛的应用。由于睡眠状态的可用性,这些网络中的大多数都使用了启用信标的操作模式,可以延长电池寿命。无线传感器节点几乎没有针对无线电干扰的保护措施,因此非常容易受到干扰。如果可以通过利用数据链路层的知识来实现​​高能效的干扰,情况将变得更糟。虽然加密可能有助于防止干扰者根据数据包的内容采取措施,但可以利用协议性质诱发的数据包排列。通过分析数据包的到达时间和数据包的长度,可以进行高能效的干扰。在本文中,我们基于学习这些网络中的超帧结构和信标间隔,提出了三种干扰攻击。详细描述了算法,进行了仿真,并检查了攻击的有效性和效率。本文的结果为IEEE 802.15.4 MAC协议的信标使能模式的超帧结构和安全性考虑提供了新的见解。

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