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Preventing Wormholes in Multi-hop Wireless Mesh Networks

机译:防止多跳无线网状网络中的虫洞

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Wireless Mesh Networks (WMNs) has become an emerging technology in recent days due to its easy deployment and low setup cost. In WMN, Routing protocols play an important role and these are susceptible to various kinds of internal attacks. One such attack that has severe impact on a WMN is a wormhole attack. A Wormhole is a low-latency link between two parts of the network through which an attacker tunnels network messages from one point to another point. In this paper, we specifically focus on wormhole attack launched by colluding nodes referred to as Byzantine wormhole attack. Unfortunately, most of the existing wormhole defense mechanisms are either centralized, or rely on additional hardware. The major challenge in detecting a byzantine wormhole link is the inability to distinguish nodes involved in the attack process, as they form the legitimate part of network. Being legitimate part of the network, they can bypass all security mechanisms and timing constraints imposed by the network. In this paper, we propose a mechanism to prevent byzantine wormhole attack in WMNs. The proposed mechanism relies on digital signatures and prevents formation of wormholes during route discovery process and it is designed for an on-demand hop-by-hop routing protocol like HWMP (Hybrid Wireless Mesh Protocol-the default routing protocol for WMN). This is simplistic and also applicable to source routing protocols like DSR. This is a software based solution and does not require additional (or) specialized hardware.
机译:无线网状网络(WMN)由于易于部署且安装成本低而已成为一种新兴技术。在WMN中,路由协议起着重要的作用,并且容易受到各种内部攻击。一种对WMN产生严重影响的攻击是虫洞攻击。虫洞是网络两部分之间的低延迟链接,攻击者通过该链接将网络消息从一个点传输到另一点。在本文中,我们特别关注由勾结节点发起的虫洞攻击,称为拜占庭虫洞攻击。不幸的是,大多数现有的虫洞防御机制要么是集中式的,要么依赖于其他硬件。检测拜占庭式虫洞链接的主要挑战是无法区分参与攻击过程的节点,因为它们构成了网络的合法部分。作为网络的合法组成部分,它们可以绕过网络施加的所有安全机制和时序约束。在本文中,我们提出了一种防止WMN中拜占庭式虫洞攻击的机制。所提出的机制依赖于数字签名,并防止在路由发现过程中形成虫洞,它是针对按需逐跳路由协议而设计的,例如HWMP(混合无线网状协议,WMN的默认路由协议)。这很简单,也适用于DSR之类的源路由协议。这是基于软件的解决方案,不需要其他(或)专用硬件。

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