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Direct Reflectance Measurements from Drones: Sensor Absolute Radiometric Calibration and System Tests for Forest Reflectance Characterization

Drone-based remote sensing has evolved rapidly in recent years. Miniaturized hyperspectral imaging sensors are becoming more common as they provide more abundant information of the object compared to traditional cameras. Reflectance is a physically defined object property and therefore often preferr...

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Detalles Bibliográficos
Autores principales: Hakala, Teemu, Markelin, Lauri, Honkavaara, Eija, Scott, Barry, Theocharous, Theo, Nevalainen, Olli, Näsi, Roope, Suomalainen, Juha, Viljanen, Niko, Greenwell, Claire, Fox, Nigel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5982404/
https://www.ncbi.nlm.nih.gov/pubmed/29751560
http://dx.doi.org/10.3390/s18051417
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author Hakala, Teemu
Markelin, Lauri
Honkavaara, Eija
Scott, Barry
Theocharous, Theo
Nevalainen, Olli
Näsi, Roope
Suomalainen, Juha
Viljanen, Niko
Greenwell, Claire
Fox, Nigel
author_facet Hakala, Teemu
Markelin, Lauri
Honkavaara, Eija
Scott, Barry
Theocharous, Theo
Nevalainen, Olli
Näsi, Roope
Suomalainen, Juha
Viljanen, Niko
Greenwell, Claire
Fox, Nigel
author_sort Hakala, Teemu
collection PubMed
description Drone-based remote sensing has evolved rapidly in recent years. Miniaturized hyperspectral imaging sensors are becoming more common as they provide more abundant information of the object compared to traditional cameras. Reflectance is a physically defined object property and therefore often preferred output of the remote sensing data capture to be used in the further processes. Absolute calibration of the sensor provides a possibility for physical modelling of the imaging process and enables efficient procedures for reflectance correction. Our objective is to develop a method for direct reflectance measurements for drone-based remote sensing. It is based on an imaging spectrometer and irradiance spectrometer. This approach is highly attractive for many practical applications as it does not require in situ reflectance panels for converting the sensor radiance to ground reflectance factors. We performed SI-traceable spectral and radiance calibration of a tuneable Fabry-Pérot Interferometer -based (FPI) hyperspectral camera at the National Physical Laboratory NPL (Teddington, UK). The camera represents novel technology by collecting 2D format hyperspectral image cubes using time sequential spectral scanning principle. The radiance accuracy of different channels varied between ±4% when evaluated using independent test data, and linearity of the camera response was on average 0.9994. The spectral response calibration showed side peaks on several channels that were due to the multiple orders of interference of the FPI. The drone-based direct reflectance measurement system showed promising results with imagery collected over Wytham Forest (Oxford, UK).
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spelling pubmed-59824042018-06-05 Direct Reflectance Measurements from Drones: Sensor Absolute Radiometric Calibration and System Tests for Forest Reflectance Characterization Hakala, Teemu Markelin, Lauri Honkavaara, Eija Scott, Barry Theocharous, Theo Nevalainen, Olli Näsi, Roope Suomalainen, Juha Viljanen, Niko Greenwell, Claire Fox, Nigel Sensors (Basel) Article Drone-based remote sensing has evolved rapidly in recent years. Miniaturized hyperspectral imaging sensors are becoming more common as they provide more abundant information of the object compared to traditional cameras. Reflectance is a physically defined object property and therefore often preferred output of the remote sensing data capture to be used in the further processes. Absolute calibration of the sensor provides a possibility for physical modelling of the imaging process and enables efficient procedures for reflectance correction. Our objective is to develop a method for direct reflectance measurements for drone-based remote sensing. It is based on an imaging spectrometer and irradiance spectrometer. This approach is highly attractive for many practical applications as it does not require in situ reflectance panels for converting the sensor radiance to ground reflectance factors. We performed SI-traceable spectral and radiance calibration of a tuneable Fabry-Pérot Interferometer -based (FPI) hyperspectral camera at the National Physical Laboratory NPL (Teddington, UK). The camera represents novel technology by collecting 2D format hyperspectral image cubes using time sequential spectral scanning principle. The radiance accuracy of different channels varied between ±4% when evaluated using independent test data, and linearity of the camera response was on average 0.9994. The spectral response calibration showed side peaks on several channels that were due to the multiple orders of interference of the FPI. The drone-based direct reflectance measurement system showed promising results with imagery collected over Wytham Forest (Oxford, UK). MDPI 2018-05-03 /pmc/articles/PMC5982404/ /pubmed/29751560 http://dx.doi.org/10.3390/s18051417 Text en © 2018 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
Hakala, Teemu
Markelin, Lauri
Honkavaara, Eija
Scott, Barry
Theocharous, Theo
Nevalainen, Olli
Näsi, Roope
Suomalainen, Juha
Viljanen, Niko
Greenwell, Claire
Fox, Nigel
Direct Reflectance Measurements from Drones: Sensor Absolute Radiometric Calibration and System Tests for Forest Reflectance Characterization
title Direct Reflectance Measurements from Drones: Sensor Absolute Radiometric Calibration and System Tests for Forest Reflectance Characterization
title_full Direct Reflectance Measurements from Drones: Sensor Absolute Radiometric Calibration and System Tests for Forest Reflectance Characterization
title_fullStr Direct Reflectance Measurements from Drones: Sensor Absolute Radiometric Calibration and System Tests for Forest Reflectance Characterization
title_full_unstemmed Direct Reflectance Measurements from Drones: Sensor Absolute Radiometric Calibration and System Tests for Forest Reflectance Characterization
title_short Direct Reflectance Measurements from Drones: Sensor Absolute Radiometric Calibration and System Tests for Forest Reflectance Characterization
title_sort direct reflectance measurements from drones: sensor absolute radiometric calibration and system tests for forest reflectance characterization
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5982404/
https://www.ncbi.nlm.nih.gov/pubmed/29751560
http://dx.doi.org/10.3390/s18051417
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