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基于无人机的空气污染测量系统的开发与验证

Development and Validation of a UAV Based System for Air Pollution Measurements.

作者信息

Villa Tommaso Francesco, Salimi Farhad, Morton Kye, Morawska Lidia, Gonzalez Felipe

机构信息

International Laboratory for Air Quality and Health (ILAQH), Queensland University of Technology (QUT), 2 George St, Brisbane QLD 4000, Australia.

Menzies Institute for Medical Research, University of Tasmania, Hobart, Tasmania 7000, Australia.

出版信息

Sensors (Basel). 2016 Dec 21;16(12):2202. doi: 10.3390/s16122202.

Abstract

Air quality data collection near pollution sources is difficult, particularly when sites are complex, have physical barriers, or are themselves moving. Small Unmanned Aerial Vehicles (UAVs) offer new approaches to air pollution and atmospheric studies. However, there are a number of critical design decisions which need to be made to enable representative data collection, in particular the location of the air sampler or air sensor intake. The aim of this research was to establish the best mounting point for four gas sensors and a Particle Number Concentration (PNC) monitor, onboard a hexacopter, so to develop a UAV system capable of measuring point source emissions. The research included two different tests: (1) evaluate the air flow behavior of a hexacopter, its downwash and upwash effect, by measuring air speed along three axes to determine the location where the sensors should be mounted; (2) evaluate the use of gas sensors for CO₂, CO, NO₂ and NO, and the PNC monitor (DISCmini) to assess the efficiency and performance of the UAV based system by measuring emissions from a diesel engine. The air speed behavior map produced by test 1 shows the best mounting point for the sensors to be alongside the UAV. This position is less affected by the propeller downwash effect. Test 2 results demonstrated that the UAV propellers cause a dispersion effect shown by the decrease of gas and PN concentration measured in real time. A Linear Regression model was used to estimate how the sensor position, relative to the UAV center, affects pollutant concentration measurements when the propellers are turned on. This research establishes guidelines on how to develop a UAV system to measure point source emissions. Such research should be undertaken before any UAV system is developed for real world data collection.

摘要

在污染源附近收集空气质量数据很困难,尤其是当监测点情况复杂、存在物理障碍或监测点本身处于移动状态时。小型无人机为空气污染和大气研究提供了新方法。然而,要实现具有代表性的数据收集,需要做出一些关键的设计决策,特别是空气采样器或空气传感器进气口的位置。本研究的目的是在六旋翼无人机上确定四个气体传感器和一个颗粒数浓度(PNC)监测仪的最佳安装点,从而开发出一种能够测量点源排放的无人机系统。该研究包括两项不同的测试:(1)通过测量沿三个轴的风速来评估六旋翼无人机的气流行为、其下洗和上洗效应,以确定传感器的安装位置;(2)评估用于测量二氧化碳、一氧化碳、二氧化氮和一氧化氮的气体传感器以及PNC监测仪(DISCmini),通过测量柴油发动机的排放来评估基于无人机的系统的效率和性能。测试1生成的风速行为图显示,传感器的最佳安装点是在无人机旁边。此位置受螺旋桨下洗效应的影响较小。测试2的结果表明,无人机螺旋桨会产生扩散效应,实时测量的气体和颗粒数浓度会降低。当螺旋桨开启时,使用线性回归模型来估计传感器相对于无人机中心的位置如何影响污染物浓度测量。本研究确立了关于如何开发用于测量点源排放的无人机系统的指导方针。在为实际数据收集开发任何无人机系统之前,都应进行此类研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0642/5191180/fbceaad1f82a/sensors-16-02202-g001.jpg

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