Implementing a Wormhole Attack on Wireless Sensor Networks with XBee S2C Devices

Julián Ramírez Gómez, Héctor Fernando Vargas Montoya, Álvaro León Henao
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引用次数: 3

Abstract

One of the most dangerous threats to Wireless Sensor Networks (WSN) are wormhole attacks, due to their capacity to manipulate routing and application data in real time and cause important damages to the integrity, availability, and confidentiality of network data. An empirical method to launch a successful attack on IEEE 802.15.4/Zigbee devices with source routing enabled is adopted in this work to find signatures for detecting wormhole attacks in real environments. It uses the KillerBee framework with algorithms for packet manipulation through a malicious node to capture and inject malicious packets in victim nodes. Besides, a reverse variant of wormhole attack is presented and executed. To evidence the realization of this threat by the attacking software, the experimental framework includes XBee S2C nodes. The results include recommendations, detection signatures and future work to face wormhole attacks involving source routing protocols like DSR.
利用XBee S2C设备实现无线传感器网络的虫洞攻击
对无线传感器网络(WSN)最危险的威胁之一是虫洞攻击,因为它们能够实时操纵路由和应用数据,并对网络数据的完整性、可用性和机密性造成重大损害。本文采用一种经验方法,对启用源路由的IEEE 802.15.4/Zigbee设备进行成功攻击,寻找真实环境中检测虫洞攻击的签名。它使用KillerBee框架及其算法,通过恶意节点进行数据包操作,以捕获并向受害节点注入恶意数据包。此外,提出并实现了一种反向的虫洞攻击。为了证明攻击软件能够实现这一威胁,实验框架中包含了XBee S2C节点。结果包括建议、检测签名和未来的工作,以面对涉及源路由协议(如DSR)的虫洞攻击。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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