Solar irradiance and aerosol optical depth measurement using an Arduino based pyrometer and sunphotometer

A microcontroller based six wavelength sunphotometer (EARTHSun) and a pyranometer (EARTHPy) was developed in this study. EARTHSun made used of Six (6) Intor® photodiodes with different wavelengths while EARTHPy made used of a BPW21 photodiode. EARTHPy was cross calibrated using a Kipp and Zonen ® CM...

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Main Author: Valera, Angelo Ashtin V.
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Language:English
Published: Animo Repository 2017
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Online Access:https://animorepository.dlsu.edu.ph/etd_bachelors/18614
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Institution: De La Salle University
Language: English
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spelling oai:animorepository.dlsu.edu.ph:etd_bachelors-191112023-02-03T06:56:40Z Solar irradiance and aerosol optical depth measurement using an Arduino based pyrometer and sunphotometer Valera, Angelo Ashtin V. A microcontroller based six wavelength sunphotometer (EARTHSun) and a pyranometer (EARTHPy) was developed in this study. EARTHSun made used of Six (6) Intor® photodiodes with different wavelengths while EARTHPy made used of a BPW21 photodiode. EARTHPy was cross calibrated using a Kipp and Zonen ® CMP3 pyranometer using two calibration methods. The first method used correlation to calibrate the pyranometer and yielded a calibration constant of 387.68x ± 3.85, x being the raw voltage. The second method's calibration constant is 350.0996 ± 61.37 which is also multiplied to the raw 2017-12-01T08:00:00Z text https://animorepository.dlsu.edu.ph/etd_bachelors/18614 Bachelor's Theses English Animo Repository Pyranometer—Design and construction Atmospheric aerosols—Measurement Measuring instruments—Design and construction Physics
institution De La Salle University
building De La Salle University Library
continent Asia
country Philippines
Philippines
content_provider De La Salle University Library
collection DLSU Institutional Repository
language English
topic Pyranometer—Design and construction
Atmospheric aerosols—Measurement
Measuring instruments—Design and construction
Physics
spellingShingle Pyranometer—Design and construction
Atmospheric aerosols—Measurement
Measuring instruments—Design and construction
Physics
Valera, Angelo Ashtin V.
Solar irradiance and aerosol optical depth measurement using an Arduino based pyrometer and sunphotometer
description A microcontroller based six wavelength sunphotometer (EARTHSun) and a pyranometer (EARTHPy) was developed in this study. EARTHSun made used of Six (6) Intor® photodiodes with different wavelengths while EARTHPy made used of a BPW21 photodiode. EARTHPy was cross calibrated using a Kipp and Zonen ® CMP3 pyranometer using two calibration methods. The first method used correlation to calibrate the pyranometer and yielded a calibration constant of 387.68x ± 3.85, x being the raw voltage. The second method's calibration constant is 350.0996 ± 61.37 which is also multiplied to the raw
format text
author Valera, Angelo Ashtin V.
author_facet Valera, Angelo Ashtin V.
author_sort Valera, Angelo Ashtin V.
title Solar irradiance and aerosol optical depth measurement using an Arduino based pyrometer and sunphotometer
title_short Solar irradiance and aerosol optical depth measurement using an Arduino based pyrometer and sunphotometer
title_full Solar irradiance and aerosol optical depth measurement using an Arduino based pyrometer and sunphotometer
title_fullStr Solar irradiance and aerosol optical depth measurement using an Arduino based pyrometer and sunphotometer
title_full_unstemmed Solar irradiance and aerosol optical depth measurement using an Arduino based pyrometer and sunphotometer
title_sort solar irradiance and aerosol optical depth measurement using an arduino based pyrometer and sunphotometer
publisher Animo Repository
publishDate 2017
url https://animorepository.dlsu.edu.ph/etd_bachelors/18614
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