Journal articles on the topic 'Bidirectional EV charger'
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Lara, Jorge, Concepción Hernández, Marco Arjona, Lesedi Masisi, and Ambrish Chandra. "Bidirectional EV charger with ancillary power quality capabilities." Ingeniería Investigación y Tecnología 23, no. 1 (January 1, 2022): 1–10. http://dx.doi.org/10.22201/fi.25940732e.2022.23.1.008.
Full textTriviño, Alicia, Jose M. Gonzalez-Gonzalez, and Miguel Castilla. "Review on Control Techniques for EV Bidirectional Wireless Chargers." Electronics 10, no. 16 (August 9, 2021): 1905. http://dx.doi.org/10.3390/electronics10161905.
Full textSatish, K., and B. Sankara Prasad. "On- Board Non-Isolated Battery Charger for EV Application Using the BDC." Journal of Advance Research in Electrical & Electronics Engineering (ISSN: 2208-2395) 2, no. 5 (May 31, 2015): 01–07. http://dx.doi.org/10.53555/nneee.v2i5.193.
Full textJangam Susmitha and B.Parasuram. "A NOVEL ANFIS CONTROLLER BASED V-G ENABLED IN BIDIRECTIONAL EV CHARGER FOR REACTIVE POWER COMPENSATION." international journal of engineering technology and management sciences 6, no. 6 (November 28, 2022): 685–98. http://dx.doi.org/10.46647/ijetms.2022.v06i06.113.
Full textKhandare, Mr Akshay A. "Performance Evaluation of Single-Phase On-Board Charger with Advanced Controller." International Journal for Research in Applied Science and Engineering Technology 9, no. 8 (August 31, 2021): 1280–86. http://dx.doi.org/10.22214/ijraset.2021.37556.
Full textMeena, Veerpratap, Dr Vinay Pant, Arunendra Verma, and Kanchan Chariya. "Performance Analysis of Fast Charging Stations for G2V and V2G Micro-grid Systems." International Journal of Innovative Science and Research Technology 5, no. 7 (July 30, 2020): 601–7. http://dx.doi.org/10.38124/ijisrt20jul460.
Full textKrishna, Bekkam, D. Anusha, and V. Karthikeyan. "Ultra-Fast DC Charger with Improved Power Quality and Optimal Algorithmic Approach to Enable V2G and G2V." Journal of Circuits, Systems and Computers 29, no. 12 (February 24, 2020): 2050197. http://dx.doi.org/10.1142/s0218126620501972.
Full textAl Attar, Houssein, Mohamed Assaad Hamida, Malek Ghanes, and Miassa Taleb. "LLC DC-DC Converter Performances Improvement for Bidirectional Electric Vehicle Charger Application." World Electric Vehicle Journal 13, no. 1 (December 23, 2021): 2. http://dx.doi.org/10.3390/wevj13010002.
Full textKumar Pandey, Neeraj, and Rashmi Sharma. "Bidirectional Converter for Charging /Discharging of Battery." Journal of Futuristic Sciences and Applications 3, no. 1 (2020): 1–4. http://dx.doi.org/10.51976/jfsa.312001.
Full textKisacikoglu, Mithat C., Burak Ozpineci, and Leon M. Tolbert. "EV/PHEV Bidirectional Charger Assessment for V2G Reactive Power Operation." IEEE Transactions on Power Electronics 28, no. 12 (December 2013): 5717–27. http://dx.doi.org/10.1109/tpel.2013.2251007.
Full textKataoka, Ryosuke, Akira Shichi, Hiroyuki Yamada, Yumiko Iwafune, and Kazuhiko Ogimoto. "Comparison of the Economic and Environmental Performance of V2H and Residential Stationary Battery: Development of a Multi-Objective Optimization Method for Homes of EV Owners." World Electric Vehicle Journal 10, no. 4 (November 15, 2019): 78. http://dx.doi.org/10.3390/wevj10040078.
Full textSaadeh, Osama, Anwar Al Nawasrah, and Zakariya Dalala. "A Bidirectional Electrical Vehicle Charger and Grid Interface for Grid Voltage Dip Mitigation." Energies 13, no. 15 (July 23, 2020): 3784. http://dx.doi.org/10.3390/en13153784.
Full textBarrero-González, Fermín, María Isabel Milanés-Montero, Eva González-Romera, Enrique Romero-Cadaval, and Carlos Roncero-Clemente. "Control Strategy for Electric Vehicle Charging Station Power Converters with Active Functions." Energies 12, no. 20 (October 18, 2019): 3971. http://dx.doi.org/10.3390/en12203971.
Full textLee, Jun-Young, and Byung-Moon Han. "A Bidirectional Wireless Power Transfer EV Charger Using Self-Resonant PWM." IEEE Transactions on Power Electronics 30, no. 4 (April 2015): 1784–87. http://dx.doi.org/10.1109/tpel.2014.2346255.
Full textKwon, Minho, and Sewan Choi. "An Electrolytic Capacitorless Bidirectional EV Charger for V2G and V2H Applications." IEEE Transactions on Power Electronics 32, no. 9 (September 2017): 6792–99. http://dx.doi.org/10.1109/tpel.2016.2630711.
Full textSoni, Sanjay. "Dynamic Programming Based Optimised Energy Management Strategy." Journal of Futuristic Sciences and Applications 2, no. 1 (2019): 6–10. http://dx.doi.org/10.51976/jfsa.211902.
Full textGonzález-Pérez, M., F. J. Asensio, J. I. San Martín, O. Oñederra, I. Zamora, and G. Saldaña. "Design of a bi-directional DC/DC converter for EV chargers oriented to V2G applications." Renewable Energy and Power Quality Journal 20 (September 2022): 198–203. http://dx.doi.org/10.24084/repqj20.262.
Full textMishra, Debasish, Bhim Singh, and Bijaya Ketan Panigrahi. "Adaptive Current Control for a Bidirectional Interleaved EV Charger With Disturbance Rejection." IEEE Transactions on Industry Applications 57, no. 4 (July 2021): 4080–90. http://dx.doi.org/10.1109/tia.2021.3074612.
Full textChandra Mouli, Gautham Ram, Jos Schijffelen, Mike van den Heuvel, Menno Kardolus, and Pavol Bauer. "A 10 kW Solar-Powered Bidirectional EV Charger Compatible With Chademo and COMBO." IEEE Transactions on Power Electronics 34, no. 2 (February 2019): 1082–98. http://dx.doi.org/10.1109/tpel.2018.2829211.
Full textRestrepo, Mauricio, Jordan Morris, Mehrdad Kazerani, and Claudio A. Canizares. "Modeling and Testing of a Bidirectional Smart Charger for Distribution System EV Integration." IEEE Transactions on Smart Grid 9, no. 1 (January 2018): 152–62. http://dx.doi.org/10.1109/tsg.2016.2547178.
Full textLee, Byung-Kwon, Jong-Pil Kim, Sam-Gyun Kim, and Jun-Young Lee. "An Isolated/Bidirectional PWM Resonant Converter for V2G(H) EV On-Board Charger." IEEE Transactions on Vehicular Technology 66, no. 9 (September 2017): 7741–50. http://dx.doi.org/10.1109/tvt.2017.2678532.
Full textTriviño, Alicia, Jose M. Gonzalez-Gonzalez, and Jose A. Aguado. "Theoretical analysis of the efficiency of a V2G wireless charger for Electric Vehicles." Transactions on Environment and Electrical Engineering 3, no. 1 (September 3, 2018): 9. http://dx.doi.org/10.22149/teee.v3i1.118.
Full textNoh, Jung-Hun, Seong-il Song, and Deog-Jae Hur. "Numerical Analysis of the Cooling Performance in a 7.2 kW Integrated Bidirectional OBC/LDC Module." Applied Sciences 10, no. 1 (December 30, 2019): 270. http://dx.doi.org/10.3390/app10010270.
Full textTripathi, Ashish, and Shimi Sudha Letha. "Analysis of Various Topologies and Control Circuit used in Single Phase EV Charger." International Journal for Research in Applied Science and Engineering Technology 10, no. 10 (October 31, 2022): 921–31. http://dx.doi.org/10.22214/ijraset.2022.47112.
Full textLeite, Rafael, João Afonso, and Vítor Monteiro. "A Novel Multilevel Bidirectional Topology for On-Board EV Battery Chargers in Smart Grids." Energies 11, no. 12 (December 10, 2018): 3453. http://dx.doi.org/10.3390/en11123453.
Full textLara, Jorge, Lesedi Masisi, Concepcion Hernandez, Marco A. Arjona, and Ambrish Chandra. "Novel Five-Level ANPC Bidirectional Converter for Power Quality Enhancement during G2V/V2G Operation of Cascaded EV Charger." Energies 14, no. 9 (May 5, 2021): 2650. http://dx.doi.org/10.3390/en14092650.
Full textZhao, De, Hua Wang, and Zhiyuan Liu. "Charging-Related State Prediction for Electric Vehicles Using the Deep Learning Model." Journal of Advanced Transportation 2022 (August 8, 2022): 1–12. http://dx.doi.org/10.1155/2022/4372168.
Full textErrahimi, Fatima, Najia Es sbai, Zakariae El Idrissi, and Youssef Cheddadi. "Robust integral sliding mode controller design of a bidirectional DC charger in PV-EV charging station." International Journal of Digital Signals and Smart Systems 5, no. 2 (2021): 137. http://dx.doi.org/10.1504/ijdsss.2021.10036181.
Full textCheddadi, Youssef, Zakariae El Idrissi, Fatima Errahimi, and Najia Es sbai. "Robust integral sliding mode controller design of a bidirectional DC charger in PV-EV charging station." International Journal of Digital Signals and Smart Systems 5, no. 2 (2021): 137. http://dx.doi.org/10.1504/ijdsss.2021.114557.
Full textXuan, Yang, Xu Yang, Wenjie Chen, Tao Liu, and Xiang Hao. "A Novel Three-Level CLLC Resonant DC–DC Converter for Bidirectional EV Charger in DC Microgrids." IEEE Transactions on Industrial Electronics 68, no. 3 (March 2021): 2334–44. http://dx.doi.org/10.1109/tie.2020.2972446.
Full textNasr Esfahani, Fatemeh, Ahmed Darwish, and Barry W. Williams. "Power Converter Topologies for Grid-Tied Solar Photovoltaic (PV) Powered Electric Vehicles (EVs)—A Comprehensive Review." Energies 15, no. 13 (June 24, 2022): 4648. http://dx.doi.org/10.3390/en15134648.
Full textAragon-Aviles, Sandra, Arvind H. Kadam, Tarlochan Sidhu, and Sheldon S. Williamson. "Modeling, Analysis, Design, and Simulation of a Bidirectional DC-DC Converter with Integrated Snow Removal Functionality for Solar PV Electric Vehicle Charger Applications." Energies 15, no. 8 (April 18, 2022): 2961. http://dx.doi.org/10.3390/en15082961.
Full textPurushotham, K. "Design and Implementation of Electric Vehicle Technology by Using ANN Controller." International Journal for Research in Applied Science and Engineering Technology 10, no. 1 (January 31, 2022): 1376–87. http://dx.doi.org/10.22214/ijraset.2022.40065.
Full textMolina-Martínez, Emilio J., Pedro Roncero-Sánchez, Francisco Javier López-Alcolea, Javier Vázquez, and Alfonso Parreño Torres. "Control Scheme of a Bidirectional Inductive Power Transfer System for Electric Vehicles Integrated into the Grid." Electronics 9, no. 10 (October 19, 2020): 1724. http://dx.doi.org/10.3390/electronics9101724.
Full textKumar, Vinit, and KangHyun Yi. "Single-Phase, Bidirectional, 7.7 kW Totem Pole On-Board Charging/Discharging Infrastructure." Applied Sciences 12, no. 4 (February 21, 2022): 2236. http://dx.doi.org/10.3390/app12042236.
Full textNam, Vu-Hai, Duong-Van Tinh, and Woojin Choi. "A Novel Hybrid LDC Converter Topology for the Integrated On-Board Charger of Electric Vehicles." Energies 14, no. 12 (June 17, 2021): 3603. http://dx.doi.org/10.3390/en14123603.
Full textWang, Xuntuo, Chenguang Jiang, Bo Lei, Hui Teng, Hua Kevin Bai, and James L. Kirtley. "Power-Loss Analysis and Efficiency Maximization of a Silicon-Carbide MOSFET-Based Three-Phase 10-kW Bidirectional EV Charger Using Variable-DC-Bus Control." IEEE Journal of Emerging and Selected Topics in Power Electronics 4, no. 3 (September 2016): 880–92. http://dx.doi.org/10.1109/jestpe.2016.2575921.
Full textMojumder, Md Rayid Hasan, Fahmida Ahmed Antara, Md Hasanuzzaman, Basem Alamri, and Mohammad Alsharef. "Electric Vehicle-to-Grid (V2G) Technologies: Impact on the Power Grid and Battery." Sustainability 14, no. 21 (October 25, 2022): 13856. http://dx.doi.org/10.3390/su142113856.
Full textHe, Tingting, Dylan Dah-Chuan Lu, Mingli Wu, Qinyao Yang, Teng Li, and Qiujiang Liu. "Four-Quadrant Operations of Bidirectional Chargers for Electric Vehicles in Smart Car Parks: G2V, V2G, and V4G." Energies 14, no. 1 (December 31, 2020): 181. http://dx.doi.org/10.3390/en14010181.
Full textHe, Tingting, Mingli Wu, Dylan Dah-Chuan Lu, Ricardo P. Aguilera, Jianwei Zhang, and Jianguo Zhu. "Designed Dynamic Reference With Model Predictive Control for Bidirectional EV Chargers." IEEE Access 7 (2019): 129362–75. http://dx.doi.org/10.1109/access.2019.2940214.
Full textWang, Kai, Wanli Wang, Licheng Wang, and Liwei Li. "An Improved SOC Control Strategy for Electric Vehicle Hybrid Energy Storage Systems." Energies 13, no. 20 (October 12, 2020): 5297. http://dx.doi.org/10.3390/en13205297.
Full textLiao, Jian-Tang, Hao-Wei Huang, Hong-Tzer Yang, and Desheng Li. "Decentralized V2G/G2V Scheduling of EV Charging Stations by Considering the Conversion Efficiency of Bidirectional Chargers." Energies 14, no. 4 (February 11, 2021): 962. http://dx.doi.org/10.3390/en14040962.
Full textS., Nagaraj, Ranihemamalini R., and Rajaji L. "Performance enhancement of DC/DC converters for solar powered EV." International Journal of Electrical and Computer Engineering (IJECE) 10, no. 4 (August 1, 2020): 3423. http://dx.doi.org/10.11591/ijece.v10i4.pp3423-3430.
Full textLi, Tong, Hai Zhao, Shihao Wang, Chao Yang, and Bonan Huang. "Attack and Defense Strategy of Distribution Network Cyber-Physical System Considering EV Source-Charge Bidirectionality." Electronics 10, no. 23 (November 29, 2021): 2973. http://dx.doi.org/10.3390/electronics10232973.
Full textN, Padmini, and Dr Anupama Prakash. "Reduction of Ripples in A Three Phase Dc-Dc Converter Using Pi Controller." International Journal of Engineering & Technology 7, no. 4.5 (September 22, 2018): 163. http://dx.doi.org/10.14419/ijet.v7i4.5.20036.
Full textQu, Jin Yu, Ru Wang, and Ying Chao Zhou. "Study of EV Composite Power Supply for Energy Saving." Advanced Materials Research 578 (October 2012): 3–6. http://dx.doi.org/10.4028/www.scientific.net/amr.578.3.
Full textKim, Chang-Hyun. "Discrete Optimal Control for Bidirectional DC-DC Converters of EV Chargers via Convex Combination Method." Journal of the Korean Society for Railway 21, no. 10 (November 30, 2018): 985–92. http://dx.doi.org/10.7782/jksr.2018.21.10.985.
Full textBindra, Ashok. "EV Battery Chargers, Inverters, Bidirectional Switches, and Passive Components Take Center Stage at ECCE 2022." IEEE Power Electronics Magazine 9, no. 4 (December 2022): 67–71. http://dx.doi.org/10.1109/mpel.2022.3221647.
Full textHasan, Mohammad Kamrul, AKM Ahasan Habib, Shayla Islam, Ahmad Tarmizi Abdul Ghani, and Eklas Hossain. "Resonant Energy Carrier Base Active Charge-Balancing Algorithm." Electronics 9, no. 12 (December 17, 2020): 2166. http://dx.doi.org/10.3390/electronics9122166.
Full textFakhrooeian, Parnian, and Volker Pitz. "A New Control Strategy for Energy Management of Bidirectional Chargers for Electric Vehicles to Minimize Peak Load in Low-Voltage Grids with PV Generation." World Electric Vehicle Journal 13, no. 11 (November 19, 2022): 218. http://dx.doi.org/10.3390/wevj13110218.
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