최소 단어 이상 선택하여야 합니다.
최대 10 단어까지만 선택 가능합니다.
다음과 같은 기능을 한번의 로그인으로 사용 할 수 있습니다.
NTIS 바로가기Energies, v.16 no.4, 2023년, pp.1731 -
Vishnuram, Pradeep (Electric Vehicle Charging Research Centre, Department of Electrical and Electronics Engineering, SRM Institute of Science and Technology, Chennai 603203, India) , P., Suresh (Electric Vehicle Charging Research Centre, Department of Electrical and Electronics Engineering, SRM Institute of Science and Technology, Chennai 603203, India) , R., Narayanamoorthi (Electric Vehicle Charging Research Centre, Department of Electrical and Electronics Engineering, SRM Institute of Science and Technology, Chennai 603203, India) , K., Vijayakumar (Electric Vehicle Charging Research Centre, Department of Electrical and Electronics Engineering, SRM Institute of Science and Technology, Chennai 603203, India) , Nastasi, Benedetto (Department of Planning, Design, and Technology of Architecture, Sapienza University of Rome, Via Flaminia 72, 00196 Rome, Italy)
The delivery of electricity employing an electromagnetic field that extends across an intervening region is called a wireless power transfer (WPT). This approach paves the way for electric vehicles (EVs) to use newly available options to reduce their environmental impact. This article is a review th...
Tesla, N. (1905). Art of Transmitting Electrical Energy through the Natural Mediums. (787,412), U.S. Patent.
Tesla, N. (1914). Apparatus for Transmitting Electrical Energy. (1,119,732), U.S. Patent.
Zhang Frequency-Splitting Analysis of Four-Coil Resonant Wireless Power Transfer IEEE Trans. Ind. Appl. 2014 10.1109/TIA.2013.2295007 50 2436
Zhang Loosely Coupled Transformer Structure and Interoperability Study for EV Wireless Charging Systems IEEE Trans. Power Electron. 2015 10.1109/TPEL.2015.2433678 30 6356
Bi A review of wireless power transfer for electric vehicles: Prospects to enhance sustainable mobility Appl. Energy 2016 10.1016/j.apenergy.2016.07.003 179 413
Li Battery Protective Electric Vehicle Charging Management in Renewable Energy System IEEE Trans. Ind. Inform. 2023 10.1109/TII.2022.3184398 19 1312
Shanmugam A Systematic Review of Dynamic Wireless Charging System for Electric Transportation IEEE Access 2022 10.1109/ACCESS.2022.3227217 10 133617
Kurs Wireless Power Transfer via Strongly Coupled Magnetic Resonances Science 2007 10.1126/science.1143254 317 83
Lukic Cutting the Cord: Static and Dynamic Inductive Wireless Charging of Electric Vehicles IEEE Electrif. Mag. 2013 10.1109/MELE.2013.2273228 1 57
Bi Plug-in vs. wireless charging: Life cycle energy and greenhouse gas emissions for an electric bus system Appl. Energy 2015 10.1016/j.apenergy.2015.02.031 146 11
Thornton Pulling power from the road: Charged by the route it follows, an electric bus gets a real world test Mech. Eng. 2014 10.1115/1.2014-Apr-3 136 44
Reikes, J. Personal Communication.
Miller ORNL Experience and Challenges Facing Dynamic Wireless Power Charging of EV’s IEEE Circuits Syst. Mag. 2015 10.1109/MCAS.2015.2419012 15 40
Vishnuram A Comprehensive Review on EV Power Converter Topologies Charger Types Infrastructure and Communication Techniques Front. Energy Res. 2023 10.3389/fenrg.2023.1103093 11 101
Li Wireless Power Transfer for Electric Vehicle Applications IEEE J. Emerg. Sel. Top. Power Electron. 2014 3 4
10.3390/en15207816 Venkatesan, M., Rajamanickam, N., Vishnuram, P., Bajaj, M., Blazek, V., Prokop, L., and Misak, S. (2022). A Review of Compensation Topologies and Control Techniques of Bidirectional Wireless Power Transfer Systems for Electric Vehicle Applications. Energies, 15.
Lu PEV Charging Technologies and V2G on Distributed Systems and Utility Interfaces Vehicle-to-Grid: Linking Electric Vehicles to the Smart Grid 2015 Volume 79 157
10.3390/en9110937 Kalwar, K.A., Mekhilef, S., Seyedmahmoudian, M., and Horan, B. (2016). Coil Design for High Misalignment Tolerant Inductive Power Transfer System for EV Charging. Energies, 9.
Hao A Parallel Topology for Inductive Power Transfer Power Supplies IEEE Trans. Power Electron. 2014 10.1109/TPEL.2013.2262714 29 1140
Cristofari An almost cyclic 2-coordinate descent method for singly linearly constrained problems Comput. Optim. Appl. 2019 10.1007/s10589-019-00082-0 73 411
Wang A Hybrid Incentive Program for Managing Electric Vehicle Charging Flexibility IEEE Trans. Smart Grid 2022 10.1109/TSG.2022.3197422 14 476
Batra, T. (2015). Design of Static Wireless Charging System for Electric Vehicles with Focus on Magnetic Coupling and Emissions. [Ph.D. Thesis, Aalborg University].
Kamineni A mistuning tolerant and controllable power supply for roadway wireless power systems IEEE Trans. Power Electron. 2017 10.1109/TPEL.2016.2622300 32 6689
Nagendra Sizing of Inductive Power Pads for Dynamic Charging of EVs on IPT Highways IEEE Trans. Transp. Electrif. 2017 10.1109/TTE.2017.2666554 3 405
Huh Narrow-Width Inductive Power Transfer System for Online Electrical Vehicles IEEE Trans. Power Electron. 2011 10.1109/TPEL.2011.2160972 26 3666
Choi Ultraslim S-Type Power Supply Rails for Roadway-Powered Electric Vehicles IEEE Trans. Power Electron. 2015 10.1109/TPEL.2015.2444894 30 6456
Miller Demonstrating Dynamic Wireless Charging of an Electric Vehicle: The Benefit of Electrochemical Capacitor Smoothing IEEE Power Electron. Mag. 2014 10.1109/MPEL.2014.2300978 1 12
Park Uniform Power I-Type Inductive Power Transfer System with DQ-Power Supply Rails for On-Line Electric Vehicles IEEE Trans. Power Electron. 2015 10.1109/TPEL.2015.2420372 30 6446
Farajizadeh Expandable N-Legged Converter to Drive Closely Spaced Multitransmitter Wireless Power Transfer Systems for Dynamic Charging IEEE Trans. Power Electron. 2019 10.1109/TPEL.2019.2939848 35 3794
Arteaga Multi-MHz IPT Systems for Variable Coupling IEEE Trans. Power Electron. 2017 10.1109/TPEL.2017.2768244 33 7744
Shin Design and implementation of shaped magnetic resonance- based wireless power transfer system for road-way-powered moving electric vehicles IEEE Trans. Ind. Electron. 2014 10.1109/TIE.2013.2258294 61 1179
Miller Primary-Side Power Flow Control of Wireless Power Transfer for Electric Vehicle Charging IEEE J. Emerg. Sel. Top. Power Electron. 2014 10.1109/JESTPE.2014.2382569 3 147
Vu A High-Power Multiphase Wireless Dynamic Charging System with Low Output Power Pulsation for Electric Vehicles IEEE J. Emerg. Sel. Top. Power Electron. 2019 10.1109/JESTPE.2019.2932302 8 3592
Godoy Modeling and prototype of a dynamic wireless charging system using LSPS compensation topology IEEE Trans. Ind. Appl. 2019 10.1109/TIA.2018.2871035 55 786
Azad Analysis, Optimization, and Demonstration of a Vehicular Detection System Intended for Dynamic Wireless Charging Applications IEEE Trans. Transp. Electrif. 2018 10.1109/TTE.2018.2870339 5 147
Patil A Coil Detection System for Dynamic Wireless Charging of Electric Vehicle IEEE Trans. Transp. Electrif. 2019 10.1109/TTE.2019.2905981 5 988
Huang Power Allocation for Dynamic Dual-Pickup Wireless Charging System of Electric Vehicle IEEE Trans. Magn. 2019 10.1109/TMAG.2019.2894163 55 8600106
Acero Analysis of the mutual inductance of planar-lumped inductive power transfer systems IEEE Trans. Ind. Electron. 2013 10.1109/TIE.2011.2164772 60 410
10.1109/ECCE.2011.6064008 Covic, G.A., Kissin, M.L.G., Kacprzak, D., Clausen, N., and Hao, H. (2011, January 17-22). A bipolar primary pad topology for EV stationary charging and highway power by inductive coupling. Proceedings of the IEEE Energy Conversion Congress and Exposition, Phoenix, AZ, USA.
Zaheer A Dynamic EV Charging System for Slow Moving Traffic Applications IEEE Trans. Transp. Electrif. 2016 10.1109/TTE.2016.2628796 3 354
Zhou Dynamic Wireless Power Transfer System for Electric Vehicles Employing Multiplexing LCC Modules with Individual Transmitters IEEE Access 2018 10.1109/ACCESS.2018.2875950 6 62514
Patil Wireless Power Transfer for Vehicular Applications: Overview and Challenges IEEE Trans. Transp. Electrif. 2018 10.1109/TTE.2017.2780627 4 3
Strauch Optimization, design, and modeling of ferrite core geometry for inductive wireless power transfer Int. J. Appl. Electromagn. Mech. 2015 10.3233/JAE-150029 49 145
Huang LCL Pickup Circulating Current Controller for Inductive Power Transfer Systems IEEE Trans. Power Electron. 2012 10.1109/TPEL.2012.2199132 28 2081
Sarkar An Isolated Single Input-Multiple Output DC-DC Modular Multilevel Converter for Fast Electric Vehicle Charging IEEE J. Emerg. Sel. Top. Ind. Electron. 2023 10.1109/JESTIE.2022.3221006 4 178
Chen Analysis, Design, and Control of a Transcutaneous Power Regulator for Artificial Hearts IEEE Trans. Biomed. Circuits Syst. 2009 10.1109/TBCAS.2008.2006492 3 23
Samanta A New Inductive Power Transfer Topology Using Direct AC-AC Converter with Active Source Current Waveshaping IEEE Trans. Power Electron. 2017 10.1109/TPEL.2017.2750081 33 5565
Rahulkumar An Empirical Survey on Wireless Inductive Power Pad and Resonant Magnetic Field Coupling for In-Motion EV Charging System IEEE Access 2022 10.1109/ACCESS.2022.3232852 11 4660
10.1109/EEEIC/ICPSEurope49358.2020.9160851 Smagulova, A., Lu, M., Darabi, A., and Bagheri, M. (2020, January 9-12). Simulation Analysis of PI and Fuzzy Controller for Dynamic Wireless Charging of Electric Vehicle. Proceedings of the 2020 IEEE International Conference on Environment and Electrical Engineering and 2020 IEEE Industrial and Commercial Power Systems Europe (EEEIC/I&CPS Europe), Madrid, Spain.
Yang Dynamic Improvement of Series-Series Compensated Wireless Power Transfer Systems Using Discrete Sliding Mode Control IEEE Trans. Power Electron. 2018 10.1109/TPEL.2017.2747139 33 6351
Huang Control Design for Optimizing Efficiency in Inductive Power Transfer Systems IEEE Trans. Power Electron. 2017 10.1109/TPEL.2017.2724039 33 4523
Zhang Frequency Decrease Analysis of Resonant Wireless Power Transfer IEEE Trans. Power Electron. 2014 10.1109/TPEL.2013.2277783 29 1058
Yvkoff, L. (2017, August 18). Will DC Fast Charging Harm Electric Car Batteries? 2010. Available online: https://www.cnet.com/roadshow/news/will-dc-fast-charging-harm-electric-carbatteries/.
Wu Heterogeneous Aggregation and Control Modeling for Electric Vehicles with Random Charging Behaviors IEEE Trans. Sustain. Energy 2022 10.1109/TSTE.2022.3219343 14 525
Ko The optimal system design of the online electric vehicle utilizing wireless power transmission technology IEEE Trans. Intell. Transp. Syst. 2013 10.1109/TITS.2013.2259159 14 1255
ORNL (2017, April 12). Surges Forward with 20-Kilowatt Wireless Charging for Vehicles|ORNL, Available online: https://www.ornl.gov/news/ornl-surges-forward-20-kilowatt-wireless-charging-vehicles.
Fisher Electric vehicle wireless charging technology: A state-of-the-art review of magnetic coupling systems Wirel. Power Transf. 2014 10.1017/wpt.2014.8 1 87
Lu Wireless charging technologies: Fundamentals, standards, and network applications IEEE Commun. Surveys Tuts. 2016 10.1109/COMST.2015.2499783 18 1413
Bosshard Modeling and η-α-Pareto optimization of inductive power transfer coils for electric vehicles IEEE J. Emerg. Sel. Top. Power Electron. 2015 10.1109/JESTPE.2014.2311302 3 50
Shanmugam A Comprehensive Review of the On-Road Wireless Charging System for E-Mobility Applications Front. Energy Res. 2022 10.3389/fenrg.2022.926270 10 926270
Bojarski Analysis and Control of Multiphase Inductively Coupled Resonant Converter for Wireless Electric Vehicle Charger Applications IEEE Trans. Transp. Electrif. 2016 10.1109/TTE.2016.2566921 3 312
Kamineni Analysis of coplanar intermediate coil structures in inductive power transfer systems IEEE Trans. Power Electron. 2015 10.1109/TPEL.2014.2378733 30 6141
Wu A High Efficiency 5 kW Inductive Charger for EVs Using Dual Side Control IEEE Trans. Ind. Inform. 2012 10.1109/TII.2012.2192283 8 585
Tao Adaptive Integrated Planning of Electricity Networks and Fast Charging Stations under Electric Vehicle Diffusion IEEE Trans. Power Syst. 2023 10.1109/TPWRS.2022.3167666 38 499
Sato Research on Highly Efficient Contactless Power Station System Using Meander Coil for Moving Electric Vehicle Model J. Magn. Soc. Jpn. 2012 10.3379/msjmag.1205R014 36 249
WAVE Team (2022, December 05). WAVE Projects. Available online: http://www.waveipt.com/.
Naberezhnykh, D. (2022, December 04). Feasibility Analysis and Development of On-Road Charging Solutions for Future Electric Vehicles: Dynamic Wireless Power Transfer. Available online: http://www.fabric-project.eu/images/Presentations/CERV_2015_-_Denis_ Naberezh-nykh_-_FABRIC_-_V1.pdf.
Brecher, A., and Arthur, D. (2014). Review and Evaluation of Wireless Power Transfer (WPT) for Electric Transit Applications, U.S. Department of Transportation.
Mohamed Testing and Assessment of EMFs and Touch Currents From 25-kW IPT System for Medium-Duty EVs IEEE Trans. Veh. Technol. 2019 10.1109/TVT.2019.2920827 68 7477
Bi Integrated Life Cycle Assessment and Life Cycle Cost Model for Comparing Plug-in versus Wireless Charging for an Electric Bus System J. Ind. Ecol. 2016 10.1111/jiec.12419 21 344
Jang System Architecture and Mathematical Models of Electric Transit Bus System Utilizing Wireless Power Transfer Technology IEEE Syst. J. 2015 10.1109/JSYST.2014.2369485 10 495
Jeong Economic Analysis of the Dynamic Charging Electric Vehicle IEEE Trans. Power Electron. 2015 10.1109/TPEL.2015.2424712 30 6368
Christ Evaluation of Wireless Resonant Power Transfer Systems with Human Electromagnetic Exposure Limits IEEE Trans. Electromagn. Compat. 2013 55 265
10.1097/HP.0b013e3181f06c86 International Commission on Non-Ionizing Radiation Protection (2010). Guidelines for limiting exposure to time-varying electric and magnatic fields (1 Hz-100 kHz). Health Phys., 99, 818-836.
Tell Very-low-frequency and low-frequency electric and magnetic fields associated with electric shuttle bus wireless charging Radiat. Prot. Dosim. 2014 10.1093/rpd/nct208 158 123
Nguyen Optimal coordinationof G2V and V2G to support power grids with high penetration of renewable energy IEEE Trans. Transp. Electrif. 2015 10.1109/TTE.2015.2430288 1 188
Nguyen Dynamic Demand Control of Electric Vehicles to Support Power Grid with High Penetration Level of Renewable Energy IEEE Trans. Transp. Electrif. 2016 10.1109/TTE.2016.2519821 2 66
Wei Robust Energy and Reserve Dispatch under Variable Renewable Generation IEEE Trans. Smart Grid 2015 10.1109/TSG.2014.2317744 6 369
Nastasi Innovative Use of Hydrogen in Energy Retrofitting of Listed Buildings Energy Procedia 2017 10.1016/j.egypro.2017.03.205 111 435
Brooks Final report grid regulation ancillary service Regulation 2002 1 61
10.3390/su132313065 Annarelli, A., and Palombi, G. (2021). Digitalization Capabilities for Sustainable Cyber Resilience: A Conceptual Framework. Sustainability, 13.
Cristofari A Derivative-Free Method for Structured Optimization Problems SIAM J. Optim. 2021 10.1137/20M1337417 31 1
Cristofari Total Variation Based Community Detection Using a Nonlinear Optimization Approach SIAM J. Appl. Math. 2020 10.1137/19M1270446 80 15
해당 논문의 주제분야에서 활용도가 높은 상위 5개 콘텐츠를 보여줍니다.
더보기 버튼을 클릭하시면 더 많은 관련자료를 살펴볼 수 있습니다.
*원문 PDF 파일 및 링크정보가 존재하지 않을 경우 KISTI DDS 시스템에서 제공하는 원문복사서비스를 사용할 수 있습니다.
오픈액세스 학술지에 출판된 논문
※ AI-Helper는 부적절한 답변을 할 수 있습니다.