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RF channel modelling and multi-hop routing for wireless sensor networks located on oil rigs

机译:石油钻井平台上的无线传感器网络的RF通道建模和多跳路由

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This study presents a combined analytical and empirical model for predicting the signal loss effects of metallic drilling rig structures on radio-frequency electromagnetic waves used by wireless sensor networks (WSNs) installed on a drilling rig. The model is based on the combination of free space path loss and the excess loss caused by the metallic structure separately. The authors combine both losses to predict the overall loss of signal strength. The model has been validated against field data collected from multiple drilling rigs. Further modification of the model to include the effects of different signal frequencies is under way. They present simulation results from OMNeT++ based on their model, to establish the packet loss and energy consumption expected for a real WSN. They also present a novel dynamic multi-hop routing protocol, which improves network performance by removing the constraints of single-hop forwarding. The algorithm directs packets to their destination via a selected node within a routing `cluster'. By combining their channel model and routing protocol, they are able to achieve 100% packet success, while setting transmit power levels appropriately to achieve the longest possible network lifetime.
机译:这项研究提出了一种组合的分析和经验模型,用于预测金属钻机结构对安装在钻机上的无线传感器网络(WSN)使用的射频电磁波的信号损失影响。该模型基于自由空间路径损耗和金属结构分别引起的额外损耗的组合。作者将这两种损耗结合起来,以预测信号强度的总体损耗。该模型已针对从多个钻机收集的现场数据进行了验证。正在对该模型进行进一步修改以包括不同信号频率的影响。他们基于他们的模型提供了OMNeT ++的仿真结果,以建立实际WSN所期望的数据包丢失和能耗。他们还提出了一种新颖的动态多跳路由协议,该协议通过消除单跳转发的限制来提高网络性能。该算法通过路由“集群”中的选定节点将数据包定向到其目的地。通过将他们的信道模型和路由协议相结合,他们能够实现100%的数据包成功率,同时适当地设置发射功率水平,以实现最长的网络寿命。

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