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Delay Tolerance and Energy Saving in Wireless Sensor Networks with a Mobile Base Station

机译:使用移动基站延迟无线传感器网络中的延迟公差和节能

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Recent research shows that significant energy saving can be achieved in wireless sensor networks by using mobile devices. A mobile device roams sensing fields and collects data from sensors through a short transmission range. Multihop communication is used to improve data gathering by reducing the tour length of the mobile device. In this paper we study the trade-off between energy saving and data gathering latency in wireless sensor networks. In particular, we examine the balance between the relay hop count and the tour length of a mobile Base Station (BS). We propose two heuristic algorithms, Adjacent Tree-Bounded Hop Algorithm (AT-BHA) and Farthest Node First-Bounded Hop Algorithm (FNF-BHA), to reduce energy consumption of sensor nodes. The proposed algorithms select groups of Collection Trees (CTs) and a subset of Collection Location (CL) sensor nodes to buffer and forward data to the mobile BS when it arrives. Each CL node receives sensing data from its CT nodes within bounded hop count. Extensive experiments by simulation are conducted to evaluate the performance of the proposed algorithms against another heuristic. We demonstrate that the proposed algorithms outperform the existing work with the mean of the length of mobile BS tour.
机译:最近的研究表明,通过使用移动设备可以在无线传感器网络中实现显着的节能。移动设备通过短传输范围漫游传感字段并从传感器收集来自传感器的数据。多跳通信用于通过减少移动设备的巡视长度来改进数据收集。本文研究了无线传感器网络中节能与数据收集延迟之间的权衡。特别是,我们检查移动基站(BS)的中继跳数和旅游长度之间的平衡。我们提出了两个启发式算法,相邻的树界跳跃算法(AT-BHA)和最远的节点第一有界跳转算法(FNF-BHA),以减少传感器节点的能量消耗。所提出的算法选择集合树(CTS)组和收集位置(CL)传感器节点的子集,以在到达时缓冲和转发到移动BS。每个CL节点从有界跳数内的CT节点接收传感数据。通过仿真进行广泛的实验,以评估所提出的算法对另一个启发式的性能。我们证明,所提出的算法优于现有的工作与移动BS巡回赛的长度的平均值。

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