无线地下传感器网络的环境感知连接

Xin Dong, M. Vuran
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引用次数: 25

摘要

无线地下传感器网络(Wireless underground sensor network, WUSNs)是一种将传感器埋入土壤并通过土壤进行通信的网络。土壤湿度等环境参数对WUSNs的通道质量影响较大。因此,节点的通信范围和网络连通性随时间而变化。为了应对地下通信的挑战,部署地上节点以保持连通性。本文通过对亚临界条件下的集群规模分布进行建模,并通过一种新颖的地下集群的地上通信覆盖模型来捕获不同环境条件下WUSNs的连通性。利用所建立的连通性模型,分析了在保持连通性的同时降低能耗的两种通信方案:发射功率控制和环境感知路由。结果表明,在所有土壤湿度值下,传输功率控制都能以能耗为代价保持网络连通性。利用基于土壤湿度水平的继电器可以减少这种能源消耗。还考虑了两种方法的组合,以分析连接性和能耗之间的权衡。
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Environment aware connectivity for wireless underground sensor networks
Wireless underground sensor networks (WUSNs) consist of sensors that are buried in and communicate through soil. The channel quality of WUSNs is strongly impacted by environmental parameters such soil moisture. Thus, the communication range of the nodes and the network connectivity vary over time. To address the challenges in underground communication, above ground nodes are deployed to maintain connectivity. In this paper, the connectivity of WUSNs under varying environmental conditions is captured by modeling the cluster size distribution under sub-critical conditions and through a novel aboveground communication coverage model for underground clusters. The resulting connectivity model is utilized to analyze two communication schemes: transmit power control and environment-aware routing, which maintain connectivity while reducing energy consumption. It is shown that transmit power control can maintain network connectivity under all soil moisture values at the cost of energy consumption. Utilizing relays based on soil moisture levels can decrease this energy consumption. A composite of both approaches is also considered to analyze the tradeoff between connectivity and energy consumption.
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