利用无线压力传感器网络研究流体动力学

R. Brama, P. Tundo, S. Capone, V. Giampa, L. Francioso, C. Pascali, M. D. Giorgi, S. Campilongo, A. Malvasi
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引用次数: 4

摘要

无线传感器网络使人们有机会更自由地研究物理现象,旨在增加传感器测量获得的信息内容。在这项工作中,我们将重点研究一个系统,该系统允许实验测量从部署在NACA0012飞机机翼模型上的传感器节点获得的压力分布。通过利用传感器收集的测量数据,以4Pa的分辨率测量±600Pa的压力波动,并结合计算流体动力学(CFD)模型获得的结果,该系统可以提取流动剖面,从而获得流动分离和失速现象的信息。无线测量采用增强版IEEE802.15.4e,可将功耗降低7倍。基于低功耗和有损网络路由协议(RPL)的分组路由已经通过新引入的生命周期和延迟聚合度量(L2AM)进行了改进,导致网络生命周期增加了18%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigating Flow Dynamics with Wireless Pressure Sensors Network
Wireless sensors networks enable the chance to investigate with enhanced freedom physical phenomena, aiming to increase the informative content obtained by sensors measurements. In this work we will focus on a system allowing to experimentally measure pressure profiles obtained from sensor nodes deployed on a NACA0012 aircraft wing model. By exploiting measurements gathered from sensors, allowing to measure pressure fluctuations of ±600Pa with a resolution of 4Pa, together with results obtained by Computational Fluid Dynamics (CFD) models, the system enables extracting flow profile, thus obtaining information on flow separation and stall phenomenon. Wireless measures are delivered with an enhanced version of IEEE802.15.4e, allowing to decrease power consumption by a factor of 7. Packet routing, based on Routing Protocol for Low-Power and Lossy Networks (RPL), has been improved by means of a newly introduced Lifetime and Latency Aggregatable Metric (L2AM) leading to a 18% increased network lifetime.
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