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Energy aware based fault tolerance approach for topology control in distributed sensor networks

机译:基于能量感知的容错方法在分布式传感器网络中进行拓扑控制

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摘要

A Distributed Sensor Networks (DSNs) can provide access to information anytime, anywhere by collecting, processing, analyzing and disseminating data. Thus, the network actively participates in creating a smart environment. DSNs promise to revolutionize sensing in a wide range of application domains. This is because of their reliability, accuracy, flexibility, cost effectiveness and ease of deployment of nodes in topology of DSN. Smart sensors can offer vigilant surveillance and can detect and collect data concerning any sign of machines failure, earthquakes, floods and even a terrorist attack. Energy efficiency, topology control and fault-tolerance are the most important issues in the development of next-generation DSNs. Fault tolerance is the ability of a system to deliver a desired level of functionality in presence of faults in the topology. Topology control as a low level service governs communication among all nodes and is hence the primary target for increasing connectivity and saving energy. In this work, we have proposed two models for fault detection and fault recovery to achieve fault tolerance in topology. The proposed fault detection model is used to detect faults at node level (checking nodes energy) and network level faults (link failure and packet error). The proposed fault recovery model is used to achieve fault tolerance by adjusting the topology of the randomly deployed sensor nodes based on energy aware of nodes. Finally, we have evaluated the performance parameters for the proposed scheme.
机译:分布式传感器网络(DSN)可以通过收集,处理,分析和分发数据,随时随地提供对信息的访问。因此,网络积极参与创建智能环境。 DSN有望彻底改变广泛应用领域中的传感技术。这是因为它们的可靠性,准确性,灵活性,成本效益以及易于部署的DSN拓扑中的节点。智能传感器可以提供警惕的监视,并可以检测和收集有关机器故障,地震,洪水甚至恐怖袭击的任何迹象的数据。能源效率,拓扑控制和容错是下一代DSN开发中最重要的问题。容错是系统在拓扑中存在故障时提供所需功能级别的能力。拓扑控制是一种低层服务,它控制着所有节点之间的通信,因此是增加连接性和节省能源的主要目标。在这项工作中,我们提出了两种用于故障检测和故障恢复的模型,以实现拓扑的容错能力。提出的故障检测模型用于检测节点级别的故障(检查节点能量)和网络级别的故障(链路故障和数据包错误)。所提出的故障恢复模型用于通过基于节点的能量感知来调整随机部署的传感器节点的拓扑来实现容错。最后,我们评估了所提出方案的性能参数。

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