Transfer Learning on Synchrophasor Data for Automatically Detecting and Classifying Critical Power System Events. Mohamed, T., Joshi, D., Paudel, Y., Pal, A., Kezunovic, M., Venkatasubramanian, M. V., Vittal, V., & Torresan, G. IEEE Transactions on Industry Applications, 2025. doi bibtex @ARTICLE{11074313,
author={Mohamed, Taif and Joshi, Deepak and Paudel, Yadunandan and Pal, Anamitra and Kezunovic, Mladen and Venkatasubramanian, Mani V. and Vittal, Vijay and Torresan, Gilles},
journal={IEEE Transactions on Industry Applications},
title={Transfer Learning on Synchrophasor Data for Automatically Detecting and Classifying Critical Power System Events},
year={2025},
volume={},
number={},
pages={1-12},
keywords={Phasor measurement units;Oscillators;Feature extraction;Data models;Frequency measurement;Power systems;Adaptation models;Transfer learning;Support vector machines;Power system stability;Event analysis;Faults;Frequency events;Oscillations;Synchrophasors;Transfer learning},
doi={10.1109/TIA.2025.3587209}}
Downloads: 0
{"_id":"SSWmvmokx3j2BKQCa","bibbaseid":"mohamed-joshi-paudel-pal-kezunovic-venkatasubramanian-vittal-torresan-transferlearningonsynchrophasordataforautomaticallydetectingandclassifyingcriticalpowersystemevents-2025","author_short":["Mohamed, T.","Joshi, D.","Paudel, Y.","Pal, A.","Kezunovic, M.","Venkatasubramanian, M. V.","Vittal, V.","Torresan, G."],"bibdata":{"bibtype":"article","type":"article","author":[{"propositions":[],"lastnames":["Mohamed"],"firstnames":["Taif"],"suffixes":[]},{"propositions":[],"lastnames":["Joshi"],"firstnames":["Deepak"],"suffixes":[]},{"propositions":[],"lastnames":["Paudel"],"firstnames":["Yadunandan"],"suffixes":[]},{"propositions":[],"lastnames":["Pal"],"firstnames":["Anamitra"],"suffixes":[]},{"propositions":[],"lastnames":["Kezunovic"],"firstnames":["Mladen"],"suffixes":[]},{"propositions":[],"lastnames":["Venkatasubramanian"],"firstnames":["Mani","V."],"suffixes":[]},{"propositions":[],"lastnames":["Vittal"],"firstnames":["Vijay"],"suffixes":[]},{"propositions":[],"lastnames":["Torresan"],"firstnames":["Gilles"],"suffixes":[]}],"journal":"IEEE Transactions on Industry Applications","title":"Transfer Learning on Synchrophasor Data for Automatically Detecting and Classifying Critical Power System Events","year":"2025","volume":"","number":"","pages":"1-12","keywords":"Phasor measurement units;Oscillators;Feature extraction;Data models;Frequency measurement;Power systems;Adaptation models;Transfer learning;Support vector machines;Power system stability;Event analysis;Faults;Frequency events;Oscillations;Synchrophasors;Transfer learning","doi":"10.1109/TIA.2025.3587209","bibtex":"@ARTICLE{11074313,\r\n author={Mohamed, Taif and Joshi, Deepak and Paudel, Yadunandan and Pal, Anamitra and Kezunovic, Mladen and Venkatasubramanian, Mani V. and Vittal, Vijay and Torresan, Gilles},\r\n journal={IEEE Transactions on Industry Applications}, \r\n title={Transfer Learning on Synchrophasor Data for Automatically Detecting and Classifying Critical Power System Events}, \r\n year={2025},\r\n volume={},\r\n number={},\r\n pages={1-12},\r\n keywords={Phasor measurement units;Oscillators;Feature extraction;Data models;Frequency measurement;Power systems;Adaptation models;Transfer learning;Support vector machines;Power system stability;Event analysis;Faults;Frequency events;Oscillations;Synchrophasors;Transfer learning},\r\n doi={10.1109/TIA.2025.3587209}}\r\n\r\n","author_short":["Mohamed, T.","Joshi, D.","Paudel, Y.","Pal, A.","Kezunovic, M.","Venkatasubramanian, M. V.","Vittal, V.","Torresan, G."],"key":"11074313","id":"11074313","bibbaseid":"mohamed-joshi-paudel-pal-kezunovic-venkatasubramanian-vittal-torresan-transferlearningonsynchrophasordataforautomaticallydetectingandclassifyingcriticalpowersystemevents-2025","role":"author","urls":{},"keyword":["Phasor measurement units;Oscillators;Feature extraction;Data models;Frequency measurement;Power systems;Adaptation models;Transfer learning;Support vector machines;Power system stability;Event analysis;Faults;Frequency events;Oscillations;Synchrophasors;Transfer learning"],"metadata":{"authorlinks":{}}},"bibtype":"article","biburl":"https://raw.githubusercontent.com/Anamitra-Pal-Lab/pal_website_bib/main/Pal_Web.bib","dataSources":["zWwhYvSfNTW4Rg2Rm"],"keywords":["phasor measurement units;oscillators;feature extraction;data models;frequency measurement;power systems;adaptation models;transfer learning;support vector machines;power system stability;event analysis;faults;frequency events;oscillations;synchrophasors;transfer learning"],"search_terms":["transfer","learning","synchrophasor","data","automatically","detecting","classifying","critical","power","system","events","mohamed","joshi","paudel","pal","kezunovic","venkatasubramanian","vittal","torresan"],"title":"Transfer Learning on Synchrophasor Data for Automatically Detecting and Classifying Critical Power System Events","year":2025}