无线传感器网络中高效干扰攻击检测的智能黏菌算法

Amirthasaravanan Arivunambi, Arjun Paramarthalingam
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引用次数: 3

摘要

无线传感器网络(wsn)描述了一组空间分布的传感器节点,每个节点都有单独的电池用于功耗,它可以感知温度、压力、土壤组成、车辆运动等因素,并检查物体的物理存在,这些因素通过互联网进行通信,并在最近的邻居节点之间传递消息。无线传感器网络广泛应用于环境监测、区域监测、工程监测、卫生保健监测和军事应用等领域。由于无线传感器网络极易受到各种攻击,特别是干扰攻击。这会导致高能耗,减少节点的生命周期,影响整个传感器网络,最重要的是也影响了通过网络中不同节点传输的数据包的保密性和完整性。为了克服这些问题,本文提出了一种新的生物启发算法——智能黏液霉菌(ISM),用于检测干扰节点,并应用上下文感知决策规则(CADR)建立源节点到目标节点的备选最优路径,以避免干扰节点的影响。这项工作确保了网络和数据包的保密性和完整性。
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Intelligent slime mold algorithm for proficient jamming attack detection in wireless sensor network

Wireless Sensor Networks (WSNs) depicts to the group of spatially distributed sensor nodes, each node is having individual battery for power consumption which senses the factors like Temperature, Pressure, Soil makeup, Vehicular movement, and checks the physical presence of objects, which are communicate through internet and passing messages between nearest neighbor nodes. WSN are extensively used in several applications like Environmental Monitoring, Area Monitoring, Engineering Monitoring, Health Care Monitoring, and Military Applications. Since WSN are highly susceptible for many attacks especially Jamming Attack. This causes high energy consumption, reduces the life time of nodes, affects the entire sensor networks and most significantly also the confidentiality and integrity of the data packets which are transmitted through dissimilar nodes in the network. In order to overcome these issues, a new bio-inspired algorithm called Intelligent Slime Mold (ISM) has been introduced for detection jamming node and to setting up of alternate optimal path form source node to destination node in WSN to avoid jammer affected nodes by applying Context Aware Decision Rule (CADR). This work ensures the confidentiality and integrity of both the network and data packets.

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