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An Inter-cluster Communication Based Energy Aware And Fault Tolerant Protocol For Wireless Sensor Networks

机译:基于集群间通信的无线传感器网络能量感知和容错协议

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The ambient intelligence paradigm is built upon Ubiquitous Computing (UC), in which the computing devices are embedded in the environment with the purpose of enhancing the human experience at home, workplace/ office, learning, health care etc. The UC applications aim at providing services to the users anywhere, anytime in an unobtrusive, seemingly invisible way. Wireless sensor networks (WSNs) have great potential for UC applications and are envisioned to revolutionize them. This paper presents a clustering routing protocol for event-driven, query-based and periodic WSNs. The protocol aims at optimizing energy dissipation in the network as well as providing network's fault tolerance and connectivity. Message propagation is accomplished by using short distance transmissions by employing nearest neighbor nodes between neighboring clusters. Moreover, the algorithm proposes using an energy efficient approach by alternating the nodes responsible for inter-cluster communication inside one cluster. The algorithm also aims at even energy dissipation among the nodes in the network by alternating the possible routes to the Sink. This helps to balance the load on sensor nodes and increases the network lifetime, while avoiding congested links at the same time. We discuss the implementation of our protocol, present its proof of correctness as well as the performance evaluation through an extensive set of simulation experiments.
机译:环境情报范式建立在泛在计算(UC)之上,其中将计算设备嵌入环境中,目的是增强人们在家庭,工作场所/办公室,学习,医疗保健等方面的体验。UC应用旨在提供随时随地以无干扰的,看似看不见的方式向用户提供服务。无线传感器网络(WSN)在UC应用中具有巨大潜力,并且有望对其进行革新。本文提出了一种用于事件驱动,基于查询和定期WSN的群集路由协议。该协议旨在优化网络中的能量耗散,并提供网络的容错性和连通性。通过在相邻群集之间采用最近的邻居节点,通过使用短距离传输来完成消息传播。此外,该算法提出了一种高效节能的方法,即在一个集群内部交替交换负责集群间通信的节点。该算法还通过改变到接收器的可能路由来实现网络节点间的均匀能量消耗。这有助于平衡传感器节点上的负载并延长网络寿命,同时避免同时出现拥塞。我们讨论了协议的实现,通过大量的模拟实验介绍了协议的正确性以及性能评估。

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