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首页> 外文期刊>Indian Journal of Innovations and Developments >An Enhanced Wormhole Detection Approach for Hop by Hop Message Authentication
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An Enhanced Wormhole Detection Approach for Hop by Hop Message Authentication

机译:一种逐跳消息身份验证的增强型蠕虫检测方法

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Objective: To provide Message authentication and detect the wormhole attacks in the wireless sensor networks. Methods: Source anonymous message authentication (SAMA) scheme is used for Hop-by-Hop Message Authentication. In Hop-by-Hop Message Authentication process each nodes in the routing path is confirm the authentication and integrity of the messages. A wormhole attack causes several damages while routing. Here the system introduces Enhanced Wormhole attack Detection (EWAD) based on per hop latency which is used for detect the wormhole attack. Per Hop latency is calculated based on round trip time (RTT) while route discovery phase. Results: In this experimental analysis, the performance of proposed system is highly efficient in terms of energy consumption, end to end delay. Conclusion: The system offers an efficient hop-by-hop message authentication mechanism for WSNs without any threshold limitation. Wormhole attack is one of routing attack that can be occurred during routing process. To detect that attacks Per Hop latency is computed based on round trip time (RTT).According to that value wormhole attack can be detected.
机译:目的:提供消息身份验证并检测无线传感器网络中的虫洞攻击。方法:源匿名消息身份验证(SAMA)方案用于逐跳消息身份验证。在逐跳消息身份验证过程中,路由路径中的每个节点都将确认消息的身份验证和完整性。虫洞攻击在路由时会造成多种损坏。在这里,系统引入了基于单跳延迟的增强型蠕虫攻击检测(EWAD),用于检测蠕虫攻击。每跳延迟是根据路由发现阶段中的往返时间(RTT)计算的。结果:在本实验分析中,所提出系统的性能在能耗,端到端延迟方面非常高效。结论:该系统为WSN提供了一种有效的逐跳消息身份验证机制,而没有任何阈值限制。蠕虫攻击是路由过程中可能发生的路由攻击之一。要检测攻击,将基于往返时间(RTT)计算每跳时延。根据该值,可以检测到蠕虫攻击。

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