Cargando…

Intercomparison of Small Unmanned Aircraft System (sUAS) Measurements for Atmospheric Science during the LAPSE-RATE Campaign

Small unmanned aircraft systems (sUAS) are rapidly transforming atmospheric research. With the advancement of the development and application of these systems, improving knowledge of best practices for accurate measurement is critical for achieving scientific goals. We present results from an interc...

Descripción completa

Detalles Bibliográficos
Autores principales: Barbieri, Lindsay, Kral, Stephan T., Bailey, Sean C. C., Frazier, Amy E., Jacob, Jamey D., Reuder, Joachim, Brus, David, Chilson, Phillip B., Crick, Christopher, Detweiler, Carrick, Doddi, Abhiram, Elston, Jack, Foroutan, Hosein, González-Rocha, Javier, Greene, Brian R., Guzman, Marcelo I., Houston, Adam L., Islam, Ashraful, Kemppinen, Osku, Lawrence, Dale, Pillar-Little, Elizabeth A., Ross, Shane D., Sama, Michael P., Schmale, David G., Schuyler, Travis J., Shankar, Ajay, Smith, Suzanne W., Waugh, Sean, Dixon, Cory, Borenstein, Steve, de Boer, Gijs
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6540006/
https://www.ncbi.nlm.nih.gov/pubmed/31083477
http://dx.doi.org/10.3390/s19092179
_version_ 1783422523591884800
author Barbieri, Lindsay
Kral, Stephan T.
Bailey, Sean C. C.
Frazier, Amy E.
Jacob, Jamey D.
Reuder, Joachim
Brus, David
Chilson, Phillip B.
Crick, Christopher
Detweiler, Carrick
Doddi, Abhiram
Elston, Jack
Foroutan, Hosein
González-Rocha, Javier
Greene, Brian R.
Guzman, Marcelo I.
Houston, Adam L.
Islam, Ashraful
Kemppinen, Osku
Lawrence, Dale
Pillar-Little, Elizabeth A.
Ross, Shane D.
Sama, Michael P.
Schmale, David G.
Schuyler, Travis J.
Shankar, Ajay
Smith, Suzanne W.
Waugh, Sean
Dixon, Cory
Borenstein, Steve
de Boer, Gijs
author_facet Barbieri, Lindsay
Kral, Stephan T.
Bailey, Sean C. C.
Frazier, Amy E.
Jacob, Jamey D.
Reuder, Joachim
Brus, David
Chilson, Phillip B.
Crick, Christopher
Detweiler, Carrick
Doddi, Abhiram
Elston, Jack
Foroutan, Hosein
González-Rocha, Javier
Greene, Brian R.
Guzman, Marcelo I.
Houston, Adam L.
Islam, Ashraful
Kemppinen, Osku
Lawrence, Dale
Pillar-Little, Elizabeth A.
Ross, Shane D.
Sama, Michael P.
Schmale, David G.
Schuyler, Travis J.
Shankar, Ajay
Smith, Suzanne W.
Waugh, Sean
Dixon, Cory
Borenstein, Steve
de Boer, Gijs
author_sort Barbieri, Lindsay
collection PubMed
description Small unmanned aircraft systems (sUAS) are rapidly transforming atmospheric research. With the advancement of the development and application of these systems, improving knowledge of best practices for accurate measurement is critical for achieving scientific goals. We present results from an intercomparison of atmospheric measurement data from the Lower Atmospheric Process Studies at Elevation—a Remotely piloted Aircraft Team Experiment (LAPSE-RATE) field campaign. We evaluate a total of 38 individual sUAS with 23 unique sensor and platform configurations using a meteorological tower for reference measurements. We assess precision, bias, and time response of sUAS measurements of temperature, humidity, pressure, wind speed, and wind direction. Most sUAS measurements show broad agreement with the reference, particularly temperature and wind speed, with mean value differences of 1.6 [Formula: see text] C and 0.22 [Formula: see text] m/s for all sUAS, respectively. sUAS platform and sensor configurations were found to contribute significantly to measurement accuracy. Sensor configurations, which included proper aspiration and radiation shielding of sensors, were found to provide the most accurate thermodynamic measurements (temperature and relative humidity), whereas sonic anemometers on multirotor platforms provided the most accurate wind measurements (horizontal speed and direction). We contribute both a characterization and assessment of sUAS for measuring atmospheric parameters, and identify important challenges and opportunities for improving scientific measurements with sUAS.
format Online
Article
Text
id pubmed-6540006
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-65400062019-06-04 Intercomparison of Small Unmanned Aircraft System (sUAS) Measurements for Atmospheric Science during the LAPSE-RATE Campaign Barbieri, Lindsay Kral, Stephan T. Bailey, Sean C. C. Frazier, Amy E. Jacob, Jamey D. Reuder, Joachim Brus, David Chilson, Phillip B. Crick, Christopher Detweiler, Carrick Doddi, Abhiram Elston, Jack Foroutan, Hosein González-Rocha, Javier Greene, Brian R. Guzman, Marcelo I. Houston, Adam L. Islam, Ashraful Kemppinen, Osku Lawrence, Dale Pillar-Little, Elizabeth A. Ross, Shane D. Sama, Michael P. Schmale, David G. Schuyler, Travis J. Shankar, Ajay Smith, Suzanne W. Waugh, Sean Dixon, Cory Borenstein, Steve de Boer, Gijs Sensors (Basel) Article Small unmanned aircraft systems (sUAS) are rapidly transforming atmospheric research. With the advancement of the development and application of these systems, improving knowledge of best practices for accurate measurement is critical for achieving scientific goals. We present results from an intercomparison of atmospheric measurement data from the Lower Atmospheric Process Studies at Elevation—a Remotely piloted Aircraft Team Experiment (LAPSE-RATE) field campaign. We evaluate a total of 38 individual sUAS with 23 unique sensor and platform configurations using a meteorological tower for reference measurements. We assess precision, bias, and time response of sUAS measurements of temperature, humidity, pressure, wind speed, and wind direction. Most sUAS measurements show broad agreement with the reference, particularly temperature and wind speed, with mean value differences of 1.6 [Formula: see text] C and 0.22 [Formula: see text] m/s for all sUAS, respectively. sUAS platform and sensor configurations were found to contribute significantly to measurement accuracy. Sensor configurations, which included proper aspiration and radiation shielding of sensors, were found to provide the most accurate thermodynamic measurements (temperature and relative humidity), whereas sonic anemometers on multirotor platforms provided the most accurate wind measurements (horizontal speed and direction). We contribute both a characterization and assessment of sUAS for measuring atmospheric parameters, and identify important challenges and opportunities for improving scientific measurements with sUAS. MDPI 2019-05-10 /pmc/articles/PMC6540006/ /pubmed/31083477 http://dx.doi.org/10.3390/s19092179 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Barbieri, Lindsay
Kral, Stephan T.
Bailey, Sean C. C.
Frazier, Amy E.
Jacob, Jamey D.
Reuder, Joachim
Brus, David
Chilson, Phillip B.
Crick, Christopher
Detweiler, Carrick
Doddi, Abhiram
Elston, Jack
Foroutan, Hosein
González-Rocha, Javier
Greene, Brian R.
Guzman, Marcelo I.
Houston, Adam L.
Islam, Ashraful
Kemppinen, Osku
Lawrence, Dale
Pillar-Little, Elizabeth A.
Ross, Shane D.
Sama, Michael P.
Schmale, David G.
Schuyler, Travis J.
Shankar, Ajay
Smith, Suzanne W.
Waugh, Sean
Dixon, Cory
Borenstein, Steve
de Boer, Gijs
Intercomparison of Small Unmanned Aircraft System (sUAS) Measurements for Atmospheric Science during the LAPSE-RATE Campaign
title Intercomparison of Small Unmanned Aircraft System (sUAS) Measurements for Atmospheric Science during the LAPSE-RATE Campaign
title_full Intercomparison of Small Unmanned Aircraft System (sUAS) Measurements for Atmospheric Science during the LAPSE-RATE Campaign
title_fullStr Intercomparison of Small Unmanned Aircraft System (sUAS) Measurements for Atmospheric Science during the LAPSE-RATE Campaign
title_full_unstemmed Intercomparison of Small Unmanned Aircraft System (sUAS) Measurements for Atmospheric Science during the LAPSE-RATE Campaign
title_short Intercomparison of Small Unmanned Aircraft System (sUAS) Measurements for Atmospheric Science during the LAPSE-RATE Campaign
title_sort intercomparison of small unmanned aircraft system (suas) measurements for atmospheric science during the lapse-rate campaign
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6540006/
https://www.ncbi.nlm.nih.gov/pubmed/31083477
http://dx.doi.org/10.3390/s19092179
work_keys_str_mv AT barbierilindsay intercomparisonofsmallunmannedaircraftsystemsuasmeasurementsforatmosphericscienceduringthelapseratecampaign
AT kralstephant intercomparisonofsmallunmannedaircraftsystemsuasmeasurementsforatmosphericscienceduringthelapseratecampaign
AT baileyseancc intercomparisonofsmallunmannedaircraftsystemsuasmeasurementsforatmosphericscienceduringthelapseratecampaign
AT frazieramye intercomparisonofsmallunmannedaircraftsystemsuasmeasurementsforatmosphericscienceduringthelapseratecampaign
AT jacobjameyd intercomparisonofsmallunmannedaircraftsystemsuasmeasurementsforatmosphericscienceduringthelapseratecampaign
AT reuderjoachim intercomparisonofsmallunmannedaircraftsystemsuasmeasurementsforatmosphericscienceduringthelapseratecampaign
AT brusdavid intercomparisonofsmallunmannedaircraftsystemsuasmeasurementsforatmosphericscienceduringthelapseratecampaign
AT chilsonphillipb intercomparisonofsmallunmannedaircraftsystemsuasmeasurementsforatmosphericscienceduringthelapseratecampaign
AT crickchristopher intercomparisonofsmallunmannedaircraftsystemsuasmeasurementsforatmosphericscienceduringthelapseratecampaign
AT detweilercarrick intercomparisonofsmallunmannedaircraftsystemsuasmeasurementsforatmosphericscienceduringthelapseratecampaign
AT doddiabhiram intercomparisonofsmallunmannedaircraftsystemsuasmeasurementsforatmosphericscienceduringthelapseratecampaign
AT elstonjack intercomparisonofsmallunmannedaircraftsystemsuasmeasurementsforatmosphericscienceduringthelapseratecampaign
AT foroutanhosein intercomparisonofsmallunmannedaircraftsystemsuasmeasurementsforatmosphericscienceduringthelapseratecampaign
AT gonzalezrochajavier intercomparisonofsmallunmannedaircraftsystemsuasmeasurementsforatmosphericscienceduringthelapseratecampaign
AT greenebrianr intercomparisonofsmallunmannedaircraftsystemsuasmeasurementsforatmosphericscienceduringthelapseratecampaign
AT guzmanmarceloi intercomparisonofsmallunmannedaircraftsystemsuasmeasurementsforatmosphericscienceduringthelapseratecampaign
AT houstonadaml intercomparisonofsmallunmannedaircraftsystemsuasmeasurementsforatmosphericscienceduringthelapseratecampaign
AT islamashraful intercomparisonofsmallunmannedaircraftsystemsuasmeasurementsforatmosphericscienceduringthelapseratecampaign
AT kemppinenosku intercomparisonofsmallunmannedaircraftsystemsuasmeasurementsforatmosphericscienceduringthelapseratecampaign
AT lawrencedale intercomparisonofsmallunmannedaircraftsystemsuasmeasurementsforatmosphericscienceduringthelapseratecampaign
AT pillarlittleelizabetha intercomparisonofsmallunmannedaircraftsystemsuasmeasurementsforatmosphericscienceduringthelapseratecampaign
AT rossshaned intercomparisonofsmallunmannedaircraftsystemsuasmeasurementsforatmosphericscienceduringthelapseratecampaign
AT samamichaelp intercomparisonofsmallunmannedaircraftsystemsuasmeasurementsforatmosphericscienceduringthelapseratecampaign
AT schmaledavidg intercomparisonofsmallunmannedaircraftsystemsuasmeasurementsforatmosphericscienceduringthelapseratecampaign
AT schuylertravisj intercomparisonofsmallunmannedaircraftsystemsuasmeasurementsforatmosphericscienceduringthelapseratecampaign
AT shankarajay intercomparisonofsmallunmannedaircraftsystemsuasmeasurementsforatmosphericscienceduringthelapseratecampaign
AT smithsuzannew intercomparisonofsmallunmannedaircraftsystemsuasmeasurementsforatmosphericscienceduringthelapseratecampaign
AT waughsean intercomparisonofsmallunmannedaircraftsystemsuasmeasurementsforatmosphericscienceduringthelapseratecampaign
AT dixoncory intercomparisonofsmallunmannedaircraftsystemsuasmeasurementsforatmosphericscienceduringthelapseratecampaign
AT borensteinsteve intercomparisonofsmallunmannedaircraftsystemsuasmeasurementsforatmosphericscienceduringthelapseratecampaign
AT deboergijs intercomparisonofsmallunmannedaircraftsystemsuasmeasurementsforatmosphericscienceduringthelapseratecampaign