基于中断的无线传感器网状网络规划方法

M. Pellenz, Edgard Jamhour, M. H. Pereira, R. Souza
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引用次数: 1

摘要

利用网状拓扑结构可以扩展无线传感器网络(WSN)的覆盖范围,其中中间节点可以充当路由器,在传感器节点和网关之间创建多跳路径。网状拓扑对于在大范围内部署WSN特别有用,以支持智能电网和智能城市的新应用需求。多跳路径可以显著降低整个网络的容量,因为相同的数据包会被重传,从而窃取了处于同一争用域的所有节点的无线信道的传输时间。因此,为了提高网络容量,就跳数而言,较短的路径是可取的。然而,当跳数减少时,数据包必须穿越更长的距离而不能再生,这增加了由于无线信道的大规模和小规模传播影响而丢失数据包的可能性。丢失的数据包需要重传,同时也占用了无线信道的时间。在本文中,我们建立了一个用于WSN的无线容量模型,该模型使用Nakagami-m衰落模型来评估由于分组中断而引起的重传,以及一个用于评估WSN中多跳路径所需的争用模型。利用该模型,提出了一种具有或不具有中断约束的WSN网格拓扑中路由最优规划方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An outage-based method for planning wireless sensor mesh networks
The coverage area of wireless sensor networks (WSN) can be extended using the mesh topology, where intermediate nodes can act as routers to create a multi-hop path between a sensor node and the gateway. The mesh topology is specially useful to deploy WSN over large areas, to support the demand for novel applications to smart grid and smart cities. Multi-hop paths can significantly reduce the overall network capacity, because a same packet is re-transmitted stealing transmission time of the wireless channel of all nodes that are in the same contention domain. Thus, to improve the network capacity, short paths in terms of hops are desirable. However, when the number of hops is reduced, packets have to traverse longer distances without regeneration, increasing the probability of packet loss due to large and small scale propagation effects of the wireless channel. Lost packets need to be retransmitted also stealing time of the wireless channel. In this paper, we formulate a wireless capacity model for WSN that uses a Nakagami-m fading model, to evaluate retransmissions due to packet outage, and a contention model required to evaluate multi-hop paths in WSN. Using our model, we propose a method to the optimal planning of routes in WSN mesh topologies with or without outage constraints.
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