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A new data aggregation technique in multi-sink wireless sensor networks

机译:多汇无线传感器网络中的一种新数据聚合技术

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As an essential operation in multi-sink wireless sensor networks (WSNs), the main aim of data aggregation is collecting the data stored in the sensor nodes to the sink nodes and its key points are shortening the aggregation time and prolonging the network lifetime. We know that the nearest-sink (NS) scheme has the better performance in shortening the aggregation time but it does not do well in prolonging the network time, while another scheme called round-robin (RR) has opposite result. To balance the performance between aggregation time and network lifetime, a scheme called time-window and voronoi-partition based aggregation scheduling (TVAS) is proposed in this paper. Firstly, according to the Voronoi algorithm we divide the sensing area into numbers of partitions, each of which owns several sub-regions, in which all sensor nodes will choose the same scheme to forward the data. Secondly, Recourse-Arbitration- Response (RAR) mechanism is presented to dynamically achieve the destination sink node for the sensor nodes in each sub-region which reserves several candidate sink nodes. Finally, based on the data pressures of the candidate sink nodes, the aggregation scheduling of the sensor nodes in one sub-region should be switched between the NS scheme and the proposed TVAS scheme. A performance evaluation reveals that the proposed TVAS scheme can achieve the balance between reducing the aggregation time and prolonging the network lifetime of the WSN in an asymmetric data generation environment.
机译:作为多汇无线传感器网络(WSN)中的基本操作,数据聚集的主要目的是将存储在传感器节点中的数据收集到宿节点,其关键点缩短了聚合时间并延长了网络寿命。我们知道最近的水槽(NS)方案在缩短聚合时间方面具有更好的性能,但它在延长网络时间时它不好,而另一个名为Round-Robin(RR)的方案具有相反的结果。为了平衡聚合时间和网络生命周期之间的性能,本文提出了一种名为Time-Window和Voronoi分区的聚合调度(TVAS)的方案。首先,根据Voronoi算法,我们将感测区域划分为分区数量,每个分区拥有多个子区域,其中所有传感器节点都将选择相同的方案来转发数据。其次,提出了追溯 - 仲裁 - 响应(RAR)机制以动态实现用于保留几个候选宿节点的每个子区域中的传感器节点的目的地汇节点。最后,基于候选宿节点的数据压力,应在NS方案和所提出的TVAS方案之间切换一个子区域中的传感器节点的聚合调度。绩效评估表明,所提出的TVAS方案可以在减少聚合时间和延长非对称数据生成环境中延长WSN的网络生命周期之间的平衡。

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