Electric vehicles the future of transportation sector: a review
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[1] Michael O. Harpster,et al. The Electrification of the Automobile: From Conventional Hybrid, to Plug-in Hybrids, to Extended-Range Electric Vehicles , 2008 .
[2] Mohsen Gitizadeh,et al. Well-being analysis of distribution network in the presence of electric vehicles , 2018 .
[3] Zhenhong Lin,et al. Within-Day Recharge of Plug-in Hybrid Electric Vehicles: Energy Impact of Public Charging Infrastructure , 2012 .
[4] Kevin Morrow,et al. Plug-in Hybrid Electric Vehicle Charging Infrastructure Review , 2008 .
[5] P. T. Krein,et al. Review of the Impact of Vehicle-to-Grid Technologies on Distribution Systems and Utility Interfaces , 2013, IEEE Transactions on Power Electronics.
[6] J. R. Aguero,et al. Integration of Plug-in Electric Vehicles and distributed energy resources on power distribution systems , 2012, 2012 IEEE International Electric Vehicle Conference.
[7] Amit Kumar Singh,et al. Impact analysis of electric vehicle charging station integration with distributed generators on power systems , 2021, Int. J. Circuit Theory Appl..
[8] Ross Baldick,et al. The Evolution of Plug-In Electric Vehicle-Grid Interactions , 2012, IEEE Transactions on Smart Grid.
[9] Azah Mohamed,et al. Hybrid electric vehicles and their challenges: A review , 2014 .
[10] Michael Fowler,et al. A Review of Range Extenders in Battery Electric Vehicles: Current Progress and Future Perspectives , 2021, World Electric Vehicle Journal.
[11] Enrique Rosales-Asensio,et al. Estimating the benefits of vehicle-to-home in islands: The case of the Canary Islands , 2017 .
[12] B. Kroposki,et al. A review of plug-in vehicles and vehicle-to-grid capability , 2008, 2008 34th Annual Conference of IEEE Industrial Electronics.
[13] K. Kurani,et al. MARKETING CLEAN AND EFFICIENT VEHICLES : A REVIEW OF SOCIAL MARKETING AND SOCIAL SCIENCE APPROACHES , 2002 .
[14] Ching Chuen Chan,et al. Electric, Hybrid, and Fuel-Cell Vehicles: Architectures and Modeling , 2010, IEEE Transactions on Vehicular Technology.
[15] Ali Zockaie,et al. A general corridor model for designing plug-in electric vehicle charging infrastructure to support intercity travel ☆ , 2016 .
[16] Ashutosh Das,et al. Aggregated electric vehicle resource modelling for regulation services commitment in power grid , 2019, Sustainable Cities and Society.
[17] Kensuke Kamichi,et al. Development of Vehicle Power Connector Equipped with Outdoor Power Outlet Using Vehicle Inlet of Plug-In Hybrid Vehicle , 2013 .
[18] Yutaka Motoaki,et al. Location-Allocation of Electric Vehicle Fast Chargers—Research and Practice , 2019, World Electric Vehicle Journal.
[19] Nadarajah Mithulananthan,et al. Impact of electric vehicle fast charging on power system voltage stability , 2014 .
[20] J. Driesen,et al. The Impact of Charging Plug-In Hybrid Electric Vehicles on a Residential Distribution Grid , 2010, IEEE Transactions on Power Systems.
[21] Ghazal Razeghi,et al. Impacts of plug-in electric vehicles in a balancing area , 2016 .
[22] S. Travis Waller,et al. Path-Constrained Traffic Assignment: A Trip Chain Analysis , 2016 .
[23] Georgios A. Vokas,et al. Wind Generation and Electric Vehicles coordination in Microgrids for Peak Shaving purposes , 2017 .
[24] Rebecca S. Levinson,et al. Impact of public electric vehicle charging infrastructure , 2017, Transportation Research Part D: Transport and Environment.
[25] Mohamed Zellagui,et al. Charging and Discharging Strategies of Electric Vehicles: A Survey , 2021, World Electric Vehicle Journal.
[26] O. Johansson-Stenman,et al. Costs and Benefits of Electric Vehicles , 2003 .
[27] Mansour Tabari,et al. An Energy Management Strategy for a DC Distribution System for Power System Integration of Plug-In Electric Vehicles , 2016, IEEE Transactions on Smart Grid.
[28] J. Van Mierlo,et al. Electric and electric hybrid vehicle technology: a survey , 2000 .
[29] João L. Afonso,et al. Vehicle Electrification: New Challenges and Opportunities for Smart Grids , 2018, Energies.
[30] Bogdan I. Epureanu,et al. Modeling, control, and performance of a novel architecture of hybrid electric powertrain system , 2016 .
[31] Hadi Khani,et al. Bidirectional smart charging of electric vehicles considering user preferences, peer to peer energy trade, and provision of grid ancillary services , 2021 .
[32] Gaber Magdy,et al. Review of Positive and Negative Impacts of Electric Vehicles Charging on Electric Power Systems , 2020, Energies.
[33] Houjun Tang,et al. A review of recent trends in wireless power transfer technology and its applications in electric vehicle wireless charging , 2018, Renewable and Sustainable Energy Reviews.
[34] Lee Chapman,et al. Transport and climate change: a review , 2007 .
[35] Hewu Wang,et al. Optimal decentralized valley-filling charging strategy for electric vehicles , 2014 .
[36] Ching Chuen Chan,et al. An overview of power electronics in electric vehicles , 1997, IEEE Trans. Ind. Electron..
[37] Feng Wei,et al. Development Status of Electric Vehicles , 2004 .
[38] Rosario Miceli,et al. Recharge stations: A review , 2016, 2016 Eleventh International Conference on Ecological Vehicles and Renewable Energies (EVER).
[39] Vitor Monteiro,et al. Impact of Electric Vehicles on power quality in a Smart Grid context , 2011, 11th International Conference on Electrical Power Quality and Utilisation.
[40] Lingfeng Wang,et al. Integration of Plug-in Hybrid Electric Vehicles into Residential Distribution Grid Based on Two-Layer Intelligent Optimization , 2014, IEEE Transactions on Smart Grid.
[41] Filipe Joel Soares,et al. Integration of Electric Vehicles in the Electric Power System , 2011, Proceedings of the IEEE.
[42] K. Tammi,et al. Impact of Electric Vehicle Charging Station Load on Distribution Network , 2018 .
[43] Tetsuo Tezuka,et al. Modeling shared autonomous electric vehicles: Potential for transport and power grid integration , 2018, Energy.
[44] Seung-Ki Sul,et al. System Integration and Power-Flow Management for a Series Hybrid Electric Vehicle Using Supercapacitors and Batteries , 2008, IEEE Transactions on Industry Applications.
[45] R. Rudramoorthy,et al. Review of design considerations and technological challenges for successful development and deployment of plug-in hybrid electric vehicles , 2010 .
[46] Ottorino Veneri,et al. Experimental analysis on the performance of lithium based batteries for road full electric and hybrid vehicles , 2014 .
[47] Shuang Gao,et al. Opportunities and Challenges of Vehicle-to-Home, Vehicle-to-Vehicle, and Vehicle-to-Grid Technologies , 2013, Proceedings of the IEEE.
[48] Michael Devetsikiotis,et al. EV charging stations and modes: International standards , 2014, 2014 International Symposium on Power Electronics, Electrical Drives, Automation and Motion.
[49] Chanan Singh,et al. Power System Reliability Assessment With Electric Vehicle Integration Using Battery Exchange Mode , 2013, IEEE Transactions on Sustainable Energy.
[50] S. Stegen,et al. Review of energy storage systems for vehicles based on technology, environmental impacts, and costs , 2021 .
[51] Thomas H. Bradley,et al. Review of hybrid, plug-in hybrid, and electric vehicle market modeling Studies , 2013 .
[52] Shailendra Jain,et al. Electric propulsion system for electric vehicular technology: A review , 2014 .
[53] Yu Peng,et al. A review on electric vehicles interacting with renewable energy in smart grid , 2015 .
[54] P Frías,et al. Assessment of the Impact of Plug-in Electric Vehicles on Distribution Networks , 2011, IEEE Transactions on Power Systems.
[55] M. Muratori. Impact of uncoordinated plug-in electric vehicle charging on residential power demand , 2018 .
[56] Goran Andersson,et al. On integration of plug-in hybrid electric vehicles into existing power system structures , 2010 .
[57] Cong Liu,et al. Impact of plug-in hybrid electric vehicles on power systems with demand response and wind power , 2011 .
[58] Vigna Kumaran Ramachandaramurthy,et al. Integration of electric vehicles in smart grid: A review on vehicle to grid technologies and optimization techniques , 2016 .
[59] Sayed M. Said,et al. Smart Charging of Electric Vehicles According to Electricity Price , 2019, 2019 International Conference on Innovative Trends in Computer Engineering (ITCE).
[60] Guodong Yin,et al. A survey of powertrain configuration studies on hybrid electric vehicles , 2020 .
[61] Mladen Kezunovic,et al. PHEVs as dynamically configurable dispersed energy storage for V2B uses in the smart grid , 2010 .
[62] Chee Wei Tan,et al. A review of energy sources and energy management system in electric vehicles , 2013 .
[63] Mo-Yuen Chow,et al. A Survey on the Electrification of Transportation in a Smart Grid Environment , 2012, IEEE Transactions on Industrial Informatics.
[64] F. J. Soares,et al. Identifying management procedures to deal with connection of Electric Vehicles in the grid , 2009, 2009 IEEE Bucharest PowerTech.
[65] Peerapat Vithayasrichareon,et al. Impact of Electric Vehicles and Solar PV on Future Generation Portfolio Investment , 2015, IEEE Transactions on Sustainable Energy.
[66] J. Lopes,et al. Smart Charging Strategies for Electric Vehicles: Enhancing Grid Performance and Maximizing the Use of Variable Renewable Energy Resources , 2009 .
[67] Ahmet Teke,et al. A comprehensive overview of hybrid electric vehicle: Powertrain configurations, powertrain control techniques and electronic control units , 2011 .
[68] Yoshiki Yamagata,et al. Electricity Self-Sufficient Community Clustering for Energy Resilience , 2016 .
[69] J. Selman,et al. Thermal modeling of secondary lithium batteries for electric vehicle/hybrid electric vehicle applications , 2002 .
[70] Miloš Pantoš,et al. Impact of electric-drive vehicles on power system reliability , 2015 .
[71] Jin-Wei Wang,et al. The role of environmental concern in the public acceptance of autonomous electric vehicles: A survey from China , 2019, Transportation Research Part F: Traffic Psychology and Behaviour.
[72] Joeri Van Mierlo,et al. Electric vehicles, hybrid electric vehicles and fuel cell electric vehicles : state of the art and perspectives , 2001 .
[73] Arne Surmann,et al. Electric vehicles’ impacts on residential electric local profiles – A stochastic modelling approach considering socio-economic, behavioural and spatial factors , 2019, Applied Energy.
[74] Kumeresan A. Danapalasingam,et al. A review on hybrid electric vehicles architecture and energy management strategies , 2016 .
[75] Kun Cao,et al. The Impacts of Large Scale Electric Vehicles Charging Behaviour on Distribution System and Local Traffic System , 2013 .
[76] Ottorino Veneri,et al. Review on plug-in electric vehicle charging architectures integrated with distributed energy sources for sustainable mobility , 2017 .
[77] Maarouf Saad,et al. Wind power smoothing using demand response of electric vehicles , 2018, International Journal of Electrical Power & Energy Systems.
[78] Chan-Nan Lu,et al. Stochastic Analyses of Electric Vehicle Charging Impacts on Distribution Network , 2014, IEEE Transactions on Power Systems.
[79] Juha Kiviluoma,et al. Methodology for modelling plug-in electric vehicles in the power system and cost estimates for a sys , 2011 .
[80] Andrew W. Thompson. Economic implications of lithium ion battery degradation for Vehicle-to-Grid (V2X) services , 2018, Journal of Power Sources.
[81] Randall Guensler,et al. Electric vehicles: How much range is required for a day’s driving? , 2011 .
[82] Jin-Woo Jung,et al. Electric vehicles and smart grid interaction: A review on vehicle to grid and renewable energy sources integration , 2014 .
[83] G. A. Putrus,et al. Impact of electric vehicles on power distribution networks , 2009, 2009 IEEE Vehicle Power and Propulsion Conference.
[84] Benjamin K. Sovacool,et al. History, Definition, and Status of V2G , 2019, Vehicle-to-Grid.
[85] Emiliano Sisinni,et al. On the Mobile Communication Requirements for the Demand-Side Management of Electric Vehicles , 2018 .
[86] Robert C. Green,et al. The impact of plug-in hybrid electric vehicles on distribution networks: a review and outlook , 2010, IEEE PES General Meeting.
[87] Johan Driesen,et al. Electric Vehicle Charging in an Office Building Microgrid With Distributed Energy Resources , 2014, IEEE Transactions on Sustainable Energy.
[88] Fatih Erden,et al. Adaptive V2G Peak Shaving and Smart Charging Control for Grid Integration of PEVs , 2018, Electric Power Components and Systems.
[89] Alexandre Beaudet. Electric Vehicles for Low-Carbon Transport , 2007 .
[90] Salman Habib,et al. Impact analysis of vehicle-to-grid technology and charging strategies of electric vehicles on distribution networks – A review , 2015 .
[91] Bengt Johansson,et al. A COMPARISON OF TECHNOLOGIES FOR CARBON-NEUTRAL PASSENGER TRANSPORT , 2002 .
[93] F. Sioshansi,et al. Transitioning from conventional to electric vehicles: The effect of cost and environmental drivers on peak oil demand , 2019, Economic Analysis and Policy.
[94] Willett Kempton,et al. Vehicle-to-grid power implementation: From stabilizing the grid to supporting large-scale renewable energy , 2005 .
[95] Mark A. Delucchi,et al. An analysis of the retail and lifecycle cost of battery-powered electric vehicles , 2001 .
[96] Ross Baldick,et al. Plug-In Electric Vehicle to Home (V2H) Operation Under a Grid Outage , 2017, IEEE Transactions on Smart Grid.
[97] Shanxu Duan,et al. Optimal Integration of Plug-In Hybrid Electric Vehicles in Microgrids , 2014, IEEE Transactions on Industrial Informatics.
[98] Matthew J. Rutherford,et al. The impact of Electric Vehicle battery charging on distribution transformers , 2011, 2011 Twenty-Sixth Annual IEEE Applied Power Electronics Conference and Exposition (APEC).
[99] Paul Denholm,et al. Emissions impacts and benefits of plug-in hybrid electric vehicles and vehicle-to-grid services. , 2009, Environmental science & technology.
[100] Xing Zhang,et al. Powertrain architectures of electrified vehicles: Review, classification and comparison , 2015, J. Frankl. Inst..
[101] Ju Bin Song,et al. Optimal charging and discharging for multiple PHEVs with demand side management in vehicle-to-building , 2012, Journal of Communications and Networks.
[102] Edris Pouresmaeil,et al. Integration of electric vehicles into a smart power grid: A technical review , 2016, 2016 IEEE Electrical Power and Energy Conference (EPEC).
[103] Syed Muhammad Anwar,et al. A survey on electric vehicle transportation within smart grid system , 2018 .
[104] L. Fulton,et al. Analysis and Projections of BEVs, Renewable Electricity, and GHG Reductions through 2050 , 2019 .
[105] Inmaculada Zamora,et al. Plug-in electric vehicles in electric distribution networks: A review of smart charging approaches , 2014 .
[106] Z. Qian,et al. Siting and sizing of electric vehicle fast‐charging station based on quasi‐dynamic traffic flow , 2020, IET Renewable Power Generation.
[107] Moustafa El-Gindy,et al. Hybrid electric vehicles technology and simulation: Literature review , 2003 .
[108] Yoshiki Yamagata,et al. Energy Resilient Smart Community: Sharing Green Electricity Using V2C Technology , 2014 .
[109] Thomas P. Lyon,et al. Is “smart charging” policy for electric vehicles worthwhile? , 2012 .
[110] Narayan C. Kar,et al. A Survey and Comparison of Characteristics of Motor Drives Used in Electric Vehicles , 2006, 2006 Canadian Conference on Electrical and Computer Engineering.
[111] Chee Wei Tan,et al. Electric vehicles standards, charging infrastructure, and impact on grid integration: A technological review , 2020 .
[112] John W. Polak,et al. Modelling electric vehicles use: a survey on the methods , 2017 .
[113] David B. Richardson,et al. Electric vehicles and the electric grid: A review of modeling approaches, Impacts, and renewable energy integration , 2013 .
[114] M. Rizwan,et al. Integration of electric vehicle charging stations and capacitors in distribution systems with vehicle-to-grid facility , 2021 .
[115] Sarvapali D. Ramchurn,et al. Towards an optimal EV charging scheduling scheme with V2G and V2V energy transfer , 2016, 2016 IEEE International Conference on Smart Grid Communications (SmartGridComm).
[116] Jeremy Neubauer,et al. The impact of range anxiety and home, workplace, and public charging infrastructure on simulated battery electric vehicle lifetime utility , 2014 .
[117] Ruifeng Shi,et al. Integration of renewable energy sources and electric vehicles in V2G network with adjustable robust optimization , 2020, Renewable Energy.
[118] Dmitry A. Grushevenko,et al. Long-term electric vehicles outlook and their potential impact on electric grid , 2020 .
[119] Ibrahim Dincer,et al. Economic and environmental comparison of conventional, hybrid, electric and hydrogen fuel cell vehicles , 2006 .
[120] Christos S. Ioakimidis,et al. Peak shaving and valley filling of power consumption profile in non-residential buildings using an electric vehicle parking lot , 2018 .
[121] S. Tiong,et al. Review of Renewable Energy-Based Charging Infrastructure for Electric Vehicles , 2021, Applied Sciences.
[122] P. Chittur Ramaswamy,et al. Impact of electric vehicles on distribution network operation: Real world case studies , 2016 .
[123] Francisco J. Martinez,et al. A Review on Electric Vehicles: Technologies and Challenges , 2021 .
[124] Arup Kumar Goswami,et al. Impact of plug-in electric vehicles and distributed generation on reliability of distribution systems , 2018 .
[125] Frank Merten,et al. Vehicle to grid and Demand Side Management — An assessment of different strategies for the integration of electric vehicles , 2011 .
[126] Doron Aurbach,et al. A short review on the comparison between Li battery systems and rechargeable magnesium battery technology , 2001 .
[127] P. Bauer,et al. Grid Impact of Electric Vehicle Fast Charging Stations: Trends, Standards, Issues and Mitigation Measures - An Overview , 2021, IEEE Open Journal of Power Electronics.