Renewable energy integration with electric vehicle technology: A review of the existing smart charging approaches
暂无分享,去创建一个
B. Azzopardi | Pronamika Buragohain | Sushanta Bordoloi | Pranjal Barman | L. Dutta | A. Kalita | Swapna Bharali
[1] B. Azzopardi,et al. Electric Vehicle Battery Supply Chain and Critical Materials: A Brief Survey of State of the Art , 2023, Energies.
[2] M. Marzband,et al. State-of-the-art vehicle-to-everything mode of operation of electric vehicles and its future perspectives , 2022, Renewable and Sustainable Energy Reviews.
[3] F. You,et al. Sustainable design of Cornell University campus energy systems toward climate neutrality and 100% renewables , 2022, Renewable and Sustainable Energy Reviews.
[4] John Collins,et al. A review of equity in electricity tariffs in the renewable energy era , 2022, Renewable and Sustainable Energy Reviews.
[5] Omar Farrok,et al. Environmental impact of renewable energy source based electrical power plants: Solar, wind, hydroelectric, biomass, geothermal, tidal, ocean, and osmotic , 2022, Renewable and Sustainable Energy Reviews.
[6] K. Vora,et al. Vehicle to Grid (V2G): Booster for EV adaptation in India , 2021, 2021 IEEE 2nd International Conference on Smart Technologies for Power, Energy and Control (STPEC).
[7] C. Filote,et al. An overview and performance evaluation of open charge point protocol from an electromobility concept perspective , 2021, International Journal of Energy Research.
[8] C. Kemfert,et al. Accounting for spatiality of renewables and storage in transmission planning , 2021, Energy Economics.
[9] C. Hoicka,et al. Many Actors Amongst Multiple Renewables: A Systematic Review of Actor Involvement in Complementarity of Renewable Energy Sources , 2021, SSRN Electronic Journal.
[10] Massimo Paolucci,et al. Optimal Charging and Routing of Electric Vehicles With Power Constraints and Time-of-Use Energy Prices , 2020, IEEE Transactions on Vehicular Technology.
[11] B. Sovacool,et al. Actors, business models, and innovation activity systems for vehicle-to-grid (V2G) technology: A comprehensive review , 2020, Renewable and Sustainable Energy Reviews.
[12] R. May,et al. Paint it black: Efficacy of increased wind turbine rotor blade visibility to reduce avian fatalities , 2020, Ecology and evolution.
[13] J. Heeter,et al. Will consumers really pay for green electricity? Comparing stated and revealed preferences for residential programs in the United States , 2020 .
[14] Gilbert L Michaud. Perspectives on community solar policy adoption across the United States , 2020 .
[15] Rajesh Kumar,et al. Collaborative multi‐aggregator electric vehicle charge scheduling with PV‐assisted charging stations under variable solar profiles , 2020, IET Smart Grid.
[16] Shaorong Wang,et al. Energy Cost Optimization of Hybrid Renewables Based V2G Microgrid Considering Multi Objective Function by Using Artificial Bee Colony Optimization , 2020, IEEE Access.
[17] Hafiz M.N. Iqbal,et al. Potential environmental impacts of wind energy development: A global perspective , 2020 .
[18] Y. Perez,et al. Vehicle-to-Everything (V2X) energy services, value streams, and regulatory policy implications , 2020 .
[19] Volker H. Hoffmann,et al. Challenges and solution technologies for the integration of variable renewable energy sources—a review , 2020, Renewable Energy.
[20] Srdjan Lukic,et al. Extreme Fast Charging of Electric Vehicles: A Technology Overview , 2019, IEEE Transactions on Transportation Electrification.
[21] Hak-Man Kim,et al. Stationary Energy Storage System for Fast EV Charging Stations: Simultaneous Sizing of Battery and Converter , 2019, Energies.
[22] Furkan Ahmad,et al. A State of the Art Review of Electric Vehicle to Grid (V2G) technology , 2019, IOP Conference Series: Materials Science and Engineering.
[23] Wei Pei,et al. Research overview of energy storage in renewable energy power fluctuation mitigation , 2019, CSEE Journal of Power and Energy Systems.
[24] Joao P. S. Catalao,et al. Impact factors analysis on the probability characterized effects of time of use demand response tariffs using association rule mining method , 2019, Energy Conversion and Management.
[25] Enrique Rosales-Asensio,et al. Electric vehicle charging strategy to support renewable energy sources in Europe 2050 low-carbon scenario , 2019, Energy.
[26] J. Heeter,et al. Empowered communities: The rise of community choice aggregation in the United States , 2019, Energy Policy.
[27] Yuling Tang,et al. Optimal schedule of grid-connected residential PV generation systems with battery storages under time-of-use and step tariffs , 2019, Journal of Energy Storage.
[28] Hafiz M.N. Iqbal,et al. Environmental impact and pollution-related challenges of renewable wind energy paradigm - A review. , 2019, The Science of the total environment.
[29] Linrong Zhang,et al. Feasibility analysis of China’s carbon taxation policy responding to the carbon tariff scheme of USA , 2019, Carbon Letters.
[30] Scott Samuelsen,et al. Prioritizing among the end uses of excess renewable energy for cost-effective greenhouse gas emission reductions , 2019, Applied Energy.
[31] Arthur A. Raney,et al. Politics, values, and morals: Assessing consumer responses to the framing of residential renewable energy in the United States , 2018, Energy Research & Social Science.
[32] N. Eyre,et al. An international review of markets for voluntary green electricity tariffs , 2018, Renewable and Sustainable Energy Reviews.
[33] Taher Niknam,et al. Exploring prospective benefits of electric vehicles for optimal energy conditioning in distribution networks , 2018, Energy.
[34] Yu Luo,et al. A Bi-Level Optimization Approach to Charging Load Regulation of Electric Vehicle Fast Charging Stations Based on a Battery Energy Storage System , 2018 .
[35] Aqueel Ahmad,et al. A Comprehensive Review on Solar Powered Electric Vehicle Charging System , 2018 .
[36] Adel Nasiri,et al. An overview of the environmental, economic, and material developments of the solar and wind sources coupled with the energy storage systems , 2017 .
[37] Enrique Rosales-Asensio,et al. Estimating the benefits of vehicle-to-home in islands: The case of the Canary Islands , 2017 .
[38] A. B. Gallo,et al. Energy storage in the energy transition context: A technology review , 2016 .
[39] Merve Yildirim,et al. Computation of the Speed of Four In-Wheel Motors of an Electric Vehicle Using a Radial Basis Neural Network , 2016 .
[40] Ahmad Zahedi,et al. Electric vehicle to grid for power regulation: A review , 2016, 2016 IEEE International Conference on Power System Technology (POWERCON).
[41] Chunhua Liu,et al. Design and Analysis of an Electronic-Geared Magnetless Machine for Electric Vehicles , 2016, IEEE Transactions on Industrial Electronics.
[42] Bo Qu,et al. Dynamic frequency response from electric vehicles considering travelling behavior in the Great Britain power system , 2016 .
[43] Zechun Hu,et al. Value of the energy storage system in an electric bus fast charging station , 2015 .
[44] Detlef Stolten,et al. Power to Gas: Technological Overview, Systems Analysis and Economic Assessment , 2015 .
[45] Luigi Martirano,et al. EV fast charging stations and energy storage technologies: A real implementation in the smart micro grid paradigm , 2015 .
[46] Frede Blaabjerg,et al. Renewable energy resources: Current status, future prospects and their enabling technology , 2014 .
[47] Jin-Woo Jung,et al. Electric vehicles and smart grid interaction: A review on vehicle to grid and renewable energy sources integration , 2014 .
[48] Benedikt Battke,et al. A review and probabilistic model of lifecycle costs of stationary batteries in multiple applications , 2013 .
[49] Guishan Yang,et al. Environmental impact assessments of the Three Gorges Project in China: Issues and interventions , 2013 .
[50] David B. Richardson,et al. Electric vehicles and the electric grid: A review of modeling approaches, Impacts, and renewable energy integration , 2013 .
[51] Osama A. Mohammed,et al. Optimal charging of plug-in electric vehicles for a car park infrastructure , 2012, 2012 IEEE Industry Applications Society Annual Meeting.
[52] M. Y. Ayad,et al. Vehicle hybridization with fuel cell, supercapacitors and batteries by sliding mode control , 2011 .
[53] Ahmed Yousuf Saber,et al. Plug-in Vehicles and Renewable Energy Sources for Cost and Emission Reductions , 2011, IEEE Transactions on Industrial Electronics.
[54] T. S. Bhatti,et al. A review on electrochemical double-layer capacitors , 2010 .
[55] Willett Kempton,et al. Integration of renewable energy into the transport and electricity sectors through V2G , 2008 .
[56] M. L. Healy,et al. Environmental Assessment of Single‐Walled Carbon Nanotube Processes , 2008 .
[57] Kaushik Rajashekara,et al. Power Electronics and Motor Drives in Electric, Hybrid Electric, and Plug-In Hybrid Electric Vehicles , 2008, IEEE Transactions on Industrial Electronics.
[58] Phatiphat Thounthong,et al. Control strategy of fuel cell/supercapacitors hybrid power sources for electric vehicle , 2006 .
[59] T. Tsoutsos,et al. Environmental impacts from the solar energy technologies , 2005 .
[60] L. Solero,et al. Design of multiple-input power converter for hybrid vehicles , 2004, IEEE Transactions on Power Electronics.
[61] M. Raubal,et al. Using rooftop photovoltaic generation to cover individual electric vehicle demand—A detailed case study , 2022, Renewable and Sustainable Energy Reviews.
[62] Elaine T. Hale,et al. Assessing the value of electric vehicle managed charging: a review of methodologies and results , 2022, Energy & Environmental Science.
[63] C. Menictas,et al. Modelling and optimal energy management for battery energy storage systems in renewable energy systems: A review , 2022, Renewable and Sustainable Energy Reviews.
[64] Paul Breeze,et al. Solar Integration and the Environmental Impact of Solar Power , 2016 .
[65] Philip M. Fearnside,et al. Environmental and Social Impacts of Hydroelectric Dams in Brazilian Amazonia: Implications for the Aluminum Industry , 2016 .
[66] Thomas H. Bradley,et al. Design, demonstrations and sustainability impact assessments for plug-in hybrid electric vehicles , 2009 .
[67] Peter B. Luh,et al. International Journal of Parallel, Emergent and Distributed Systems Decentralised Online Charging Scheduling for Large Populations of Electric Vehicles: a Cyber-physical System Approach Decentralised Online Charging Scheduling for Large Populations of Electric Vehicles: a Cyber-physical System Appro , 2022 .
[68] R. Dougal,et al. List of References: Main References for Part I Electric Power Systems Research Control Enhancement of Power Conditioning Units for High Quality Pv Systems a Compact Digitally Controlled Fuel Cell/battery Hybrid Power Source , 2022 .