针对多径AODV的能量感知黑洞攻击

Chaitali Biswas Dutta, U. Biswas
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引用次数: 2

摘要

在无线网络中,节点之间不是通过物理链路连接的。路由是无线网络中的一个重要因素。自组织按需距离矢量(AODV)是无线传感器网络中应用最广泛的路由协议之一。AODV是一种无状态协议,它在源和目的之间建立和维护一条路由。如果路径中断,则确定另一条替代路径。AODV的一种替代方案,称为多路径AODV,已经提出了在单个路由发现中在源节点和目的节点之间建立多条路由。因此,多路径AODV可以在故障情况下使用替代路径,而无需进行另一个路由发现阶段。因此,与单路径AODV相比,多路径AODV具有更好的性能。传统的AODV协议容易受到众所周知的黑洞攻击。在多路径AODV中,当一条路径受到黑洞攻击时,源节点可以选择另一条替代路径。本文提出了一种针对多径AODV的新型黑洞攻击方法。据我们所知,目前还没有专门针对多路径AODV的黑洞攻击。广义地说,在提出的黑洞攻击中,攻击者寻找多路径AODV的许多备选路径经过的节点。选择这样的节点,并针对它们发起黑洞攻击,从而在一次尝试中破坏更多的路径。此外,攻击者只选择那些通过超过阈值的备选路径经过的真实节点,从而便于攻击者使用较少的节点数量。所以攻击方案是功率感知的。NS2实验结果表明了该攻击方法的有效性。
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An energy aware blackhole attack for multipath AODV
In wireless network, nodes are not connected by physical links. Routing is an important factor in wireless network. Ad-hoc On-demand Distance Vector (AODV) is one of the most widely used routing protocol in wireless sensor networks. AODV is a stateless protocol that establishes and maintains a single route between source and destination. If the path is disrupted, then another alternate path is determined. An alternative of AODV, called multipath AODV, has been proposed that establishes multiple routes between source and destination nodes in a single route discovery. So, multipath AODV can use alternative paths in case of failure without going for another route discovery phase. So multipath AODV gives better performance compared to single path AODV. The traditional AODV protocol is vulnerable to the well-known black hole attack. In case of multipath AODV, when one path is affected by blackhole attack, then source node can choose another alternative path. In this paper we propose a new type blackhole attack mainly targeting multipath AODV. To the best of our knowledge there is no blackhole attack which specifically targets multipath AODV. Broadly speaking, in the proposed blackhole attack, the attacker looks for nodes through which many alternative paths of multipath AODV passes through. Such nodes are selected and blackhole attack is launched targeting them, thereby damaging more number of paths in a single attempt. Further, the attacker selects only those genuine nodes through more than a threshold number of alternative paths pass through, thereby facilitating the attacker to use less number of nodes. So the attack scheme is power aware. NS2 experimental results show the validity of the proposed attack.
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