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The design of the en-route filtering mechanism with immediately lightweight authentication for wireless sensor networks

机译:用于无线传感器网络的具有轻量级立即身份验证的途中过滤机制的设计

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Security is a critical issue when sensor networks are deployed in the military, homeland or other hostile environments. Recently, Deng et al. pointed out the Path-based Denial of Service (PDoS) attacks can cause serious damage in a resource constrained WSNs. In the PDoS attack, an adversary floods either replayed packets or injected spurious packets in a multi-hop end-to-end communication path, so that the adversary can exhaust the resource of sensor nodes located in this routing path. Perrig et al. proposed a loosely time synchronous mechanism called μTESLA to cope with the above attack. However, the time asynchronous problem causes that the sensor node cannot verify whether the messages are valid or not before the trusted party releases the trapdoor key. In our scheme, the sensor nodes can verify the transmitted packets immediately to see whether they are generated by the trusted party or an adversary. Finally, we analyze the security of the proposed scheme and show that our scheme can resist the above attacks with lightweight operations.
机译:当传感器网络部署在军事,国土或其他敌对环境中时,安全性是至关重要的问题。最近,邓等人。指出基于路径的拒绝服务(PDoS)攻击会在资源受限的WSN中造成严重破坏。在PDoS攻击中,对手会在多跳的端到端通信路径中泛洪重播的数据包或注入的伪造数据包,从而使对手可以耗尽位于此路由路径中的传感器节点的资源。 Perrig等。提出了一种称为μTESLA的松散时间同步机制来应对上述攻击。但是,时间异步问题导致传感器节点无法在受信方释放陷门密钥之前验证消息是否有效。在我们的方案中,传感器节点可以立即验证传输的数据包,以查看它们是由受信方还是对手生成的。最后,我们分析了该方案的安全性,并表明该方案可以通过轻量级的操作抵御上述攻击。

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