Παρακαλώ χρησιμοποιήστε αυτό το αναγνωριστικό για να παραπέμψετε ή να δημιουργήσετε σύνδεσμο προς αυτό το τεκμήριο:
https://hdl.handle.net/123456789/30
Τύπος: | Άρθρο σε περιοδικό |
Τίτλος: | Automated aerosol classification from spectral UV measurements using machine learning clustering |
Συγγραφέας: | [EL] Σιώμος, Νικόλαος[EN] Siomos, Nikolaos [EL] Φουντουλάκης, Ηλίας[EN] Fountoulakis, Ilias [EL] Νάτσης, Αθανάσιος[EN] Natsis, Athanasios [EL] Δρόσογλου, Θεανώ[EN] Drosoglou, Theano [EL] Μπάης, Αλκιβιάδης[EN] Bais, Alkiviadis |
Ημερομηνία: | 17/03/2020 |
Περίληψη: | In this study, we present an aerosol classification technique based on measurements of a double monochromator Brewer spectrophotometer during the period 1998–2017 in Thessaloniki, Greece. A machine learning clustering procedure was applied based on the Mahalanobis distance metric. The classification process utilizes the UV Single Scattering Albedo (SSA) at 340 nm and the Extinction Angstrom Exponent (EAE) at 320–360 nm that are obtained from the spectrophotometer. The analysis is supported by measurements from a CIMEL sunphotometer that were deployed in order to establish the training dataset of Brewer measurements. By applying the Mahalanobis distance algorithm to the Brewer timeseries, we automatically assigned measurements in one of the following clusters: Fine Non Absorbing Mixtures (FNA): 64.7%, Black Carbon Mixtures (BC): 17.4%, Dust Mixtures (DUST): 8.1%, and Mixed: 9.8%. We examined the clustering potential of the algorithm by reclassifying the training dataset and comparing it with the original one and also by using manually classified cases. The typing score of the Mahalanobis algorithm is high for all predominant clusters FNA: 77.0%, BC: 63.9%, and DUST: 80.3% when compared with the training dataset. We obtained high scores as well FNA: 100.0%, BC: 66.7%, and DUST: 83.3% when comparing it with the manually classified dataset. The flags obtained here were applied in the timeseries of the Aerosol Optical Depth (AOD) at 340 nm of the Brewer and the CIMEL in order to compare between the two and also stress the future impact of the proposed clustering technique in climatological studies of the station. |
Γλώσσα: | Αγγλικά |
Τόπος δημοσίευσης: | Thessaloniki, Greece |
Σελίδες: | 18 |
DOI: | 10.3390/rs12060965 |
Θεματική κατηγορία: | [EL] Φυσικές Επιστήμες[EN] Natural Sciences |
Λέξεις-κλειδιά: | aerosol classification; clustering; machine learning; spectrophotometer; sunphotometer |
Κάτοχος πνευματικών δικαιωμάτων: | c 2020 by the authors. Licensee MDPI |
Όροι και προϋποθέσεις δικαιωμάτων: | 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/). |
Διατίθεται ανοιχτά στην τοποθεσία: | https://doi.org/10.3390/rs12060965 |
Ηλεκτρονική διεύθυνση του τεκμηρίου στον εκδότη: | https://www.mdpi.com/2072-4292/12/6/965 |
Τίτλος πηγής δημοσίευσης: | Remote Sensing |
Τεύχος: | 6 |
Τόμος: | 12 |
Σημειώσεις: | (This article belongs to the Section Atmosphere Remote Sensing) |
Εμφανίζεται στις συλλογές: | Ερευνητικές ομάδες |
Αρχεία σε αυτό το τεκμήριο:
Το πλήρες κείμενο αυτού του τεκμηρίου δεν διατίθεται προς το παρόν από το αποθετήριο