A Fault Diagnosis Design Based on Deep Learning Approach for Electric Vehicle Applications
暂无分享,去创建一个
[1] Vadim Sokolov,et al. Deep Learning for Energy Markets , 2018, Applied Stochastic Models in Business and Industry.
[2] Abdelazeem A. Abdelsalam,et al. Characterization of power quality disturbances using hybrid technique of linear Kalman filter and fu , 2012 .
[3] Shuai Deng,et al. Deep reinforcement learning framework for dynamic pricing demand response of regenerative electric heating , 2021, Applied Energy.
[4] Yoshua Bengio,et al. Deep Learning of Representations: Looking Forward , 2013, SLSP.
[5] Avagaddi Prasad,et al. A review on fault classification methodologies in power transmission systems: Part-II , 2018 .
[6] Ivan Nunes da Silva,et al. Feature Extraction and Power Quality Disturbances Classification Using Smart Meters Signals , 2016, IEEE Transactions on Industrial Informatics.
[7] Daryoush Habibi,et al. Modelling self-optimised short term load forecasting for medium voltage loads using tunning fuzzy systems and Artificial Neural Networks , 2015 .
[8] Ali Emadi,et al. Making the Case for Electrified Transportation , 2015, IEEE Transactions on Transportation Electrification.
[9] Gevork B. Gharehpetian,et al. Sinusoidal-Ripple Current Control in Battery Charger of Electric Vehicles , 2020, IEEE Transactions on Vehicular Technology.
[10] Mo Jamshidi,et al. Big Data Analytic via Soft Computing Paradigms , 2015 .
[11] P. Konar,et al. Bearing fault detection of induction motor using wavelet and Support Vector Machines (SVMs) , 2011, Appl. Soft Comput..
[12] Raymond Reiter,et al. A Theory of Diagnosis from First Principles , 1986, Artif. Intell..
[13] Caisheng Wang,et al. Active Diagnosability of Discrete Event Systems and its Application to Battery Fault Diagnosis , 2014, IEEE Transactions on Control Systems Technology.
[14] Kambiz Tehrani,et al. A smart cyber physical multi-source energy system for an electric vehicle prototype , 2020, J. Syst. Archit..
[15] K. Manimala,et al. Optimization techniques for improving power quality data mining using wavelet packet based support vector machine , 2012, Neurocomputing.
[16] Sri R Kolla,et al. Artificial neural network based fault identification scheme implementation for a three-phase induction motor. , 2007, ISA transactions.
[17] Gevork B. Gharehpetian,et al. Important Technical Considerations in Design of Battery Chargers of Electric Vehicles , 2021, Energies.
[18] O. Bennouna,et al. Modeling & fault diagnosis system for electric vehicles , 2012, IECON 2012 - 38th Annual Conference on IEEE Industrial Electronics Society.
[19] Gevork B. Gharehpetian,et al. A novel control strategy for Reflex-based electric vehicle charging station with grid support functionality , 2017 .
[20] Roman Obermaisser,et al. Generation of a diagnosis model for hybrid-electric vehicles using machine learning , 2020, Microprocess. Microsystems.
[21] Paweł Cichosz,et al. Real-time energy purchase optimization for a storage-integrated photovoltaic system by deep reinforcement learning , 2021 .
[22] V. Sadasivam,et al. An integrated PSO for parameter determination and feature selection of ELM and its application in classification of power system disturbances , 2015, Appl. Soft Comput..
[23] Geza Joos,et al. A Combined Wavelet and Data-Mining Based Intelligent Protection Scheme for Microgrid , 2016, IEEE Transactions on Smart Grid.
[24] Maria Domenica Di Benedetto,et al. Power management for a DC MicroGrid integrating renewables and storages , 2019, Control Engineering Practice.
[25] Metin Gokasan,et al. A Novel Model Validation and Estimation Approach for Hybrid Serial Electric Vehicles , 2007, IEEE Transactions on Vehicular Technology.
[26] Mehrdad Abedi,et al. Short-term interaction between electric vehicles and microgrid in decentralized vehicle-to-grid control methods , 2019 .