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基于火箭的无人航空系统大气传感传感器的开发与测试

Development and Testing of a Rocket-Based Sensor for Atmospheric Sensing Using an Unmanned Aerial System.

作者信息

Thalman Ryan

机构信息

Department of Chemistry, Snow College, Richfield, UT 84701, USA.

出版信息

Sensors (Basel). 2024 Mar 9;24(6):1768. doi: 10.3390/s24061768.

Abstract

Measurements of the vertical structure of the lower atmosphere are important to the understanding of air quality. Unmanned Aerial Systems (UASs, drones) can provide low cost, repeatable measurements of the temperature, pressure, and relative humidity. A set of inexpensive sensors controlled with an Arduino microprocessor board were tested on a UAS against a meteorology grade sensor. Two modes of operation for sampling were tested: a forward moving sampler and a vertical ascent sampler. A small particle sensor (Sensiron SPS30) was integrated and was capable of retrieving vertical aerosol distributions during an inversion event. The thermocouple-based temperature probe and the relative humidity measurement on the Bosch BME280 sensor correlated well with the meteorological sensor. The temperature and relative humidity sensors were then deployed on a rocket sounding platform. The rocket sounding system performed well up to a height of 400 m. The inexpensive sensors were found to perform adequately for low-cost development and uses in education and research.

摘要

对低层大气垂直结构的测量对于理解空气质量很重要。无人机系统(UAS,无人机)可以提供温度、压力和相对湿度的低成本、可重复测量。一组由Arduino微处理器板控制的廉价传感器在无人机上与气象级传感器进行了测试。测试了两种采样操作模式:向前移动采样器和垂直上升采样器。集成了一个小型粒子传感器(Sensiron SPS30),它能够在逆温事件期间获取垂直气溶胶分布。基于热电偶的温度探头和博世BME280传感器上的相对湿度测量与气象传感器相关性良好。然后将温度和相对湿度传感器部署在火箭探空平台上。火箭探空系统在高达400米的高度上运行良好。发现这些廉价传感器对于低成本开发以及在教育和研究中的应用表现良好。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c67b/10975489/8e64ad8d03c7/sensors-24-01768-g001.jpg

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