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A practical approach to deploy large scale wireless sensor networks

机译:一种部署大型无线传感器网络的实用方法

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In a wireless sensor network, a sensor measures environmental data. It also relays data for other sensors. While sensing workload is the same among sensors, relaying workload differs. Sensors closer to the data sink carry more data traffic. This becomes more prominent as the network scales up. The drawback of this is that nodes in the network degrade unevenly and the network ages in a non-uniform way. This paper seeks the ways to deploy the network so that the workload is evenly distributed, thus the network overall behavior degrades in a smooth fashion. Assuming that the sensors should be evenly deployed within the monitored area, we look at the approach where a set of more powerful nodes are designated for data relaying. We look at the approach to deploy relaying nodes that are easy to implement in practice. In particular, we select sub-regions to deploy relaying nodes at calculated density. We propose a simple method where the density is simply based on the size of the area whose data is relayed by these nodes.
机译:在无线传感器网络中,传感器测量环境数据。它还继承了其他传感器的数据。在传感器之间感测工作量相同,虽然传感器之间是相同的,但中继工作量的不同之处。更靠近数据宿的传感器携带更多数据流量。随着网络缩放,这变得更加突出。缺点是网络中的节点以非均匀方式不均匀地和网络年龄降低。本文寻求部署网络的方法,以便工作负载均匀分布,因此网络整体行为以顺畅的方式降低。假设传感器应均匀地部署在监控区域内,我们看看指定了一组更强大的节点以用于数据中继的方法。我们查看可以在实践中部署易于实施的中继节点的方法。特别是,我们选择子区域以在计算的密度下部署中继节点。我们提出了一种简单的方法,其中密度简单地基于这些节点中继的区域的大小。

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