Development of a VNIR/SWIR Multispectral Imaging System for Vegetation Monitoring with Unmanned Aerial Vehicles

被引:30
作者
Jenal, Alexander [1 ,2 ]
Bareth, Georg [2 ]
Bolten, Andreas [2 ]
Kneer, Caspar [1 ]
Weber, Immanuel [1 ]
Bongartz, Jens [1 ]
机构
[1] Univ Appl Sci Koblenz, Applicat Ctr Machine Learning & Sensor Technol, D-53424 Remagen, Germany
[2] Univ Cologne, Inst Geog, GIS & RS Grp, D-50923 Cologne, Germany
关键词
short-wave infrared (SWIR); visible (VIS); near-infrared (NIR); remote sensing; unmanned aerial vehicle (UAV); multispectral; precision agriculture; phenotyping; forestry; vegetation; MAPPING SYSTEM; PLANT HEIGHT; INDEXES; UAV; CAMERAS; BIOMASS; SPECTROSCOPY; FLUORESCENCE; REFLECTANCE; CALIBRATION;
D O I
10.3390/s19245507
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Short-wave infrared (SWIR) imaging systems with unmanned aerial vehicles (UAVs) are rarely used for remote sensing applications, like for vegetation monitoring. The reasons are that in the past, sensor systems covering the SWIR range were too expensive, too heavy, or not performing well enough, as, in contrast, it is the case in the visible and near-infrared range (VNIR). Therefore, our main objective is the development of a novel modular two-channel multispectral imaging system with a broad spectral sensitivity from the visible to the short-wave infrared spectrum (approx. 400 nm to 1700 nm) that is compact, lightweight and energy-efficient enough for UAV-based remote sensing applications. Various established vegetation indices (VIs) for mapping vegetation traits can then be set up by selecting any suitable filter combination. The study describes the selection of the individual components, starting with suitable camera modules, the optical as well as the control and storage parts. Special bandpass filters are used to select the desired wavelengths to be captured. A unique flange system has been developed, which also allows the filters to be interchanged quickly in order to adapt the system to a new application in a short time. The characterization of the system was performed in the laboratory with an integrating sphere and a climatic chamber. Finally, the integration of the novel modular VNIR/SWIR imaging system into a UAV and a subsequent first outdoor test flight, in which the functionality was tested, are described.
引用
收藏
页数:26
相关论文
共 50 条
[31]   Acousto-optical imaging spectrometer for unmanned aerial vehicles [J].
Gaponov, M. ;
Machikhin, A. ;
Pozhar, V. ;
Shurygin, A. .
23RD INTERNATIONAL SYMPOSIUM ON ATMOSPHERIC AND OCEAN OPTICS: ATMOSPHERIC PHYSICS, 2017, 10466
[32]   Radiometric Correction with Topography Influence of Multispectral Imagery Obtained from Unmanned Aerial Vehicles [J].
Jenerowicz, Agnieszka ;
Wierzbicki, Damian ;
Kedzierski, Michal .
REMOTE SENSING, 2023, 15 (08)
[33]   Vicarious Radiometric Calibration of a Multispectral Camera on Board an Unmanned Aerial System [J].
Del Pozo, Susana ;
Rodriguez-Gonzalvez, Pablo ;
Hernandez-Lopez, David ;
Felipe-Garcia, Beatriz .
REMOTE SENSING, 2014, 6 (03) :1918-1937
[34]   The Use of Unmanned Aerial Vehicles for Forest Fire Monitoring [J].
Skorput, Pero ;
Mandzuka, Sadko ;
Vojvodic, Hrvoje .
PROCEEDINGS OF ELMAR 2016 - 58TH INTERNATIONAL SYMPOSIUM ELMAR 2016, 2016, :93-96
[35]   A Survey of Unmanned Aerial Vehicles (UAVs) for Traffic Monitoring [J].
Kanistras, Konstantinos ;
Martins, Goncalo ;
Rutherford, Matthew J. ;
Valavanis, Kimon P. .
2013 INTERNATIONAL CONFERENCE ON UNMANNED AIRCRAFT SYSTEMS (ICUAS), 2013, :221-234
[36]   Monitoring nitrogen status of potatoes using small unmanned aerial vehicles [J].
Hunt, E. Raymond, Jr. ;
Horneck, Donald A. ;
Spinelli, Charles B. ;
Turner, Robert W. ;
Bruce, Alan E. ;
Gadler, Daniel J. ;
Brungardt, Joshua J. ;
Hamm, Philip B. .
PRECISION AGRICULTURE, 2018, 19 (02) :314-333
[37]   Applications of unmanned aerial vehicles in radiological monitoring: A review [J].
Ardiny, Hadi ;
Beigzadeh, Amirmohammad ;
Mahani, Hojjat .
NUCLEAR ENGINEERING AND DESIGN, 2024, 422
[38]   The Use of Unmanned Aerial Vehicles in the Monitoring of Forest Fires [J].
Correia, Antonio ;
Santos, Luis Araujo ;
Carvalho, Paulo ;
Martinho, Jose .
ADVANCES IN NATURAL HAZARDS AND HYDROLOGICAL RISKS: MEETING THE CHALLENGE, NATHAZ' 19, 2020, :75-79
[39]   Estimating potassium in potato plants based on multispectral images acquired from unmanned aerial vehicles [J].
Ma, YanPeng ;
Chen, ZhiChao ;
Fan, YiGuang ;
Bian, MingBo ;
Yang, GuiJun ;
Chen, RiQiang ;
Feng, HaiKuan .
FRONTIERS IN PLANT SCIENCE, 2023, 14
[40]   UNMANNED AERIAL VEHICLES IN THE ROAD SAFETY SYSTEM [J].
Bolz, Katarzyna ;
Nowacki, Gabriel .
ROADS AND BRIDGES-DROGI I MOSTY, 2024, 23 (01) :73-98