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OSR: Optimal and Secure Routing Protocol in Multi-hop Wireless Networks

机译:OSR:多跳无线网络中的最佳和安全路由协议

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Traditional routing protocols are designed to efficiently find paths containing high-quality links under assumed trust environment. Nowadays, numerous schemes have been proposed to defend attacks with the increasing attention on security issues in the applications of multi-hop wireless networks. However, only limited works consider the routing performance while securing the routing protocols. In order to fill this gap, we design a new secure routing protocol and count its routing performance at the same time. In this paper, we propose an Optimal and Secure Routing (OSR) protocol to find optimal paths with best routing performance in terms of maximum utility value as well as resilient to active attacks. OSR protocol relies on a trust third party, Trust Clearance Center (TCC), which utilizes game theory method to calculate and assign trust value for each node according to their utility report behavior. We prove that TCC is able to detect malicious nodes and segregate them from the network when they try to launch attacks. Therefore, optimal paths can be discovered without any utility cheating. Through extensive simulations, we demonstrate that OSR can effectively discover optimal paths with high detection rate and low false alarm rate. To the best of our knowledge, this is the first piece of work that adopts game theory to deal with problems that jointly consider security and routing performance.
机译:传统的路由协议旨在在假定的信任环境下有效地查找包含高质量链接的路径。如今,在多跳无线网络的应用中,随着对安全性问题的日益关注,提出了许多防御攻击的方案。但是,只有有限的工作可以在确保路由协议安全的同时考虑路由性能。为了填补这一空白,我们设计了一种新的安全路由协议,并同时计算其路由性能。在本文中,我们提出了一种最佳安全路由(OSR)协议,以根据最大效用值以及对主动攻击的抵抗力,找到具有最佳路由性能的最佳路径。 OSR协议依赖于信任第三方信任清除中心(TCC),该中心利用博弈论方法根据每个节点的效用报告行为来计算和分配信任值。我们证明TCC能够检测到恶意节点,并在它们尝试发起攻击时将其与网络隔离。因此,可以发现最佳路径而不会欺骗任何实用程序。通过广泛的仿真,我们证明OSR可以有效地发现具有高检测率和低虚警率的最佳路径。就我们所知,这是第一篇采用博弈论的方法来处理共同考虑安全性和路由性能的问题。

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