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Intrusion Detection and Prevention Based on State Context and Hierarchical Trust in Wireless Sensor Networks

机译:基于状态上下文的入侵检测和预防和无线传感器网络中的分层信任

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This Wireless sensor networks (WSN) comprises of sensor nodes, deployed in a way to gather the information of environmental conditions from the surroundings. The dispersed quality, forwarding nature and their open source communication medium makes the wireless sensor networks deeply vulnerable which paves a way to various security attacks. Intrusion Detection System (IDS) can be an exemplary interpretation to encounter security attacks at various levels if the network. In WSNs a vulnerability is possible in selecting cluster head among the sensor nodes. Once the compromised sensor node is selected as cluster head which will lead to false communication with Base Station. IDS can neither prevent it nor respond to it, but only can detect it. IDS informs the controller to take necessary action by raising alarms if any attack is detected which is good but also leads to resource wastage and time consumption in the detection process. Prevention should be done at the launching state of the attack in order to scale down the resource wastage and time consumption. Initially the attacker launches the attack to get into the selection of cluster heads (CH) by broadcasting the control messages with fake information such as high energy and neighbor count. The false control messages are effectively detected and the attack is prevented which leads to a massive reduction of overall resource overhead while improving network performance. The experimental simulation work outputs, to detect the attacks at the base level and improves the network performance, to prevent the attack in order to reduce the resource overhead and to perform attack resident routing and data aggregation in WSN
机译:该无线传感器网络(WSN)包括传感器节点,以一种方式从周围环境收集环境条件的信息。分散的质量,转发性质及其开源通信介质使得无线传感器网络深深脆弱,为各种安全攻击铺平了道路。如果网络,入侵检测系统(IDS)可以是用于以各个级别遇到安全攻击的示例性解释。在WSN中,在选择传感器节点之间的群集头中可以进行漏洞。一旦选择了受损的传感器节点作为集群头,这将导致与基站的错误通信。 ID既不能阻止它也不能响应它,但只能检测到它。如果检测到任何攻击,则通过升高警报,ID通知控制器采取必要的操作,这很好,但也导致检测过程中的资源浪费和时间消耗。预防应该在发射状态下进行攻击状态,以缩小资源浪费和时间消耗。最初,攻击者通过向诸如高能量和邻居数量的虚假信息广播控制消息来启动攻击以选择群集头(CH)。有效地检测错误控制消息,并且防止攻击导致整体资源开销的大量降低,同时提高网络性能。实验模拟工作输出,要检测基本级别的攻击并提高网络性能,以防止攻击,以减少资源开销并在WSN中执行攻击驻地路由和数据聚合

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