面向manet的分层协同入侵检测方法(HCIDM)

Teresia Ankome, G. Lusilao-Zodi
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引用次数: 0

摘要

近年来,移动自组织无线网络(manet)由于其灵活性和随时随地提供连接的能力,在普及和使用方面经历了巨大的增长。一般来说,在节点不需要访问现有网络基础设施的情况下,manet为参与节点提供移动通信。由于缺乏基础设施和节点的移动性,manet具有随时间变化的网络拓扑结构。由于移动节点与无线信道之间关系的动态性,在manet中很难实现恶意节点的检测。大多数传统的入侵检测系统(IDS)被设计成以集中的方式运行;由于MANET中的数据分布在不同的网络设备中,因此在MANET中无法正常运行。本文提出了一种分层协同入侵检测方法(HCIDM)来保护在manet中的数据包路由。HCIDM是一种分布式入侵检测机制,它利用节点间的协作来检测针对移动自组织网络路由表的活动攻击。HCIDM通过通知其他节点恶意节点的存在来降低攻击的有效性,从而将网络性能保持在可接受的水平内。该机制的新颖之处在于保护网络的责任在节点之间分配,信任级别被计算,恶意存在的信息被传达给潜在的受害者。HCIDM是使用网络模拟器(NS-2)编码的,在黑洞攻击期间,在一个特殊的按需距离矢量中启用MANET。结果表明,与现有的协同集群入侵检测机制(CCIDM)相比,HCIDM在交付率、延迟和吞吐量等方面都具有较好的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hierarchical Cooperative Intrusion Detection Method for MANETs (HCIDM)
In the recent years, mobile ad hoc wireless networks (MANETs) have experienced a tremendous rise in popularity and usage due to their flexibility and ability to provide connectivity from anywhere at any time. In general, MANETs provide mobile communication to participating nodes in situation where nodes do not need access to an existing network infrastructure. MANETs have a network topology that changes over time due to lack of infrastructure and mobility of nodes. Detection of a malicious node in MANETs is hard to achieve due to the dynamic nature of the relationships between moving node and the nature of the wireless channel. Most traditional Intrusion Detection System (IDS) are designed to operate in a centralized manner; and do not operate properly in MANET because data in MANETs is distributed in different network devices. In this paper, we present an Hierarchical Cooperative Intrusion Detection Method (HCIDM) to secure packets routing in MANETs. HCIDM is a distributed intrusion detection mechanism that uses collaboration between nodes to detect active attacks against the routing table of a mobile ad hoc network. HCIDM reduces the effectiveness of the attack by informing other nodes about the existence of a malicious node to keep the performance of the network within an acceptable level. The novelty of the mechanism lies in the way the responsibility to protect the networks is distributed among nodes, the trust level is computed and the information about the presence of a malicious is communicated to potential victim. HCIDM is coded using the Network Simulator (NS-2) in an ad hoc on demand distance vector enable MANET during a black hole attack. It is found that the HCIDM works efficiently in comparison with an existing Collaborative Clustering Intrusion Detection Mechanism (CCIDM), in terms of delivery ratio, delay and throughput.
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