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A Medial node based privacy approaches for preventing selective jamming in wireless networks

机译:基于中间节点的隐私方法,用于防止无线网络中的选择性干扰

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Wireless networks is still an emerging field in terms of security. Taking advantage from unreliability nature of wireless medium, antagonists can easily accomplish numerous attacks. Among those attacks, selective jamming is more clever technique in which jammer will target and corrupt only the messages of high importance. There are existing methods to prevent selective jamming in internal threat model like strong hiding commitment scheme(SHCS), cryptographic puzzle hiding scheme(CPHS) in which they focused only on the correct message delivery to the receiver node. But on the other side, jammer node can solve the puzzle by taking entire packet, making the adversary to know the secured message that was transmitted. Initially, a mechanism to identify the existence of selective jamming is demonstrated. Later, a solution to know the exact node that is performing selective jamming is derived. Then two novel techniques called Embedding Future Key (EFK) and Medial node Method (MNM) are proposed to prevent selective jamming. Finally, experiments are conducted on proposed methods and it is established that better throughput is achieved than the existing methods.
机译:就安全性而言,无线网络仍是新兴领域。利用无线介质的不可靠性,对立者可以轻松地完成无数次攻击。在这些攻击中,选择性干扰是一种更聪明的技术,其中干扰器将仅针对和破坏高度重要的消息。现有的方法可以防止内部威胁模型中的选择性干扰,例如强隐藏承诺方案(SHCS),密码难题隐藏方案(CPHS),其中它们仅关注于正确地将消息传递到接收者节点。但另一方面,干扰节点可以通过获取整个数据包来解决难题,使对手知道所传输的安全消息。最初,展示了一种识别选择性卡纸存在的机制。后来,得出了知道执行选择性干扰的确切节点的解决方案。然后,提出了两种称为嵌入未来密钥(EFK)和中间节点方法(MNM)的新技术来防止选择性干扰。最后,对提出的方法进行了实验,结果表明,与现有方法相比,可以实现更好的吞吐率。

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