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RES: A Robust and Efficient Snapshot Algorithm for Wireless Sensor Networks

机译:RES:无线传感器网络的稳健和高效的快照算法

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Wireless sensor networks (WSN) have been widely used in natural environment monitoring, military, health care, human life and other fields. Distributed snapshot, i.e. the global view/state of the whole system, is a fundamental block for many network control and data processing operations in WSNs. Although there have been quite a number of snapshot algorithms proposed, most of them are designed for traditional network environments. The characteristics of WSN in resource constraints, communication link and network topology require delicately new design. In this paper, we propose a new snapshot algorithm, named RES, which can tolerate packet loss with efficient communication cost. Basically, RES is executed based on the level of a node, which is determined by the hop count to the sink node. The snapshot query and snapshot data are propagated level by level. To tolerate packet loss, a node sends a packet by local broadcasting to all neighbors, to reduce communication cost, the feedback packet from lower level nodes will be merged with replicated data removed. Our design even does not require the knowledge of node constitution and neighborhood in prior, which makes RES more practical, especially for networks with high dynamics. We conduct extensive simulations via OMNET++ to evaluate the performance of RES and compare it with similar algorithms. The results show that RES can save both communication and time cost, and it can tolerate packet losses efficiently.
机译:无线传感器网络(WSN)已广泛用于自然环境监测,军事,医疗保健,人类生活等领域。分布式快照,即整个系统的全局视图/状态,是WSN中许多网络控制和数据处理操作的基本块。虽然已经提出了相当多的快照算法,但大多数都是为传统网络环境而设计的。 WSN在资源限制,通信链路和网络拓扑中的特点是微妙的新设计。在本文中,我们提出了一种新的快照算法,名为RES,其可以容忍具有高效通信成本的数据包丢失。基本上,基于节点的级别执行res,其由跳数确定到宿节点。快照查询和快照数据按级别传播级别。为了容忍丢包,节点通过本地广播向所有邻居发送数据包,以降低通信成本,从较低级别节点的反馈包将被删除复制数据。我们的设计甚至不需要先前的节点宪法和社区的知识,这使得RES更实用,特别是对于具有高动态的网络。我们通过OMNET ++进行广泛的模拟,以评估RES的性能并将其与类似算法进行比较。结果表明,RES可以节省通信和时间成本,并且它可以有效地耐受分组损失。

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