From post

Please choose a person to relate this publication to

To differ between persons with the same name, the academic degree and the title of an important publication will be displayed.

 

Другие публикации лиц с тем же именем

Multivariate feature extraction based supervised machine learning for fault detection and diagnosis in photovoltaic systems., , , , , , и . Eur. J. Control, (2021)Efficient Fault Detection and Diagnosis in Photovoltaic System Using Deep Learning Technique., , , , , , и . CoDIT, стр. 1336-1341. IEEE, (2022)Fault detection in photovoltaic systems using machine learning technique., , , , , , и . SSD, стр. 207-212. IEEE, (2020)Implementation of Genetic Algorithm Optimization based Artificial Neural Network on Raspberry Pi for Fault Diagnosis., , , , , и . CoDIT, стр. 2995-3001. IEEE, (2024)Raspberry Pi-Based Monitoring System for Grid-Connected PV Systems using Deep Learning Technique., , , , , и . CoDIT, стр. 3002-3008. IEEE, (2024)Modeling of permanent magnet linear generator and state estimation based on sliding mode observer: A wave energy system application., , , , и . Kybernetika, 59 (5): 655-669 (2023)Fault Classification using Deep Learning in a Grid-Connected Photovoltaic Systems., , , , , и . CoDIT, стр. 1312-1317. IEEE, (2022)Fault diagnosis of uncertain photovoltaic systems using deep recurrent neural networks based Lissajous curves., , , , , и . Comput. Electr. Eng., (2025)Effective Fault Diagnosis in Grid Connected Photovoltaic Systems Using Multiscale PCA based Artificial Neural Network Technique., , , , , и . CoDIT, стр. 1318-1323. IEEE, (2022)Real-Time Fault Detection Scheme for Industrial Chemical Tennessee Eastman Process., , , , , и . CoDIT, стр. 3015-3020. IEEE, (2024)