A cluster based approach for wormhole attack detection in wireless sensor networks

M. Shahryari, H. Naji
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引用次数: 3

Abstract

Due to the need of cooperation among nodes to relay packets, wireless sensor networks are very vulnerable to attacks in all layers of the network. One of these severe attacks is the wormhole attack. Detection of wormhole attack is hard, because it can be easily implemented by attacker without having knowledge of nodes in the network or it can be compromised by any legal node in the network. To date, the most of proposed protocols to defend against wormhole attacks are made by adopting synchronized clocks, directional antennas or strong assumptions in order to detect wormhole attacks. A method based on clustering is presented in this paper to detect this type of attacks. This method is implemented in static and mobile networks. The superiority of our protocol is that during the attack prevention or attack detection, the malicious nodes are detected and requires no additional hardware or complex calculations. Simulation results are perused with the NS-2 simulator and the protocol has been evaluated in terms of packet drop ratio, throughput, delay and energy consumption compared to a network without or under attack. Simulation results show that our protocol is practical and effective in improving resilience against wormhole attacks.
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基于聚类的无线传感器网络虫洞攻击检测方法
由于无线传感器网络需要节点之间的合作来转发数据包,因此在网络的各个层都非常容易受到攻击。其中一种严重的攻击是虫洞攻击。由于攻击者在不了解网络节点的情况下可以很容易地实现虫洞攻击,或者可以被网络中的任何合法节点所破坏,因此虫洞攻击的检测是困难的。迄今为止,大多数提出的防御虫洞攻击的协议都是通过采用同步时钟、定向天线或强假设来检测虫洞攻击。本文提出了一种基于聚类的攻击检测方法。该方法已在静态和移动网络中实现。该协议的优势在于,在攻击防范或攻击检测过程中,可以检测到恶意节点,不需要额外的硬件和复杂的计算。使用NS-2模拟器对仿真结果进行了仔细研究,并对该协议进行了分组丢包率、吞吐量、延迟和能耗方面的评估,与没有攻击或受到攻击的网络进行了比较。仿真结果表明,该协议在提高对虫洞攻击的弹性方面具有实用性和有效性。
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