Cost Benefit Analysis for V2G Implementation of Electric Vehicles in Distribution System

被引:53
作者
Singh, Jyotsna [1 ]
Tiwari, Rajive [2 ]
机构
[1] Malaviya Natl Inst Technol, Jaipur 302017, India
[2] Malaviya Natl Inst Technol, Dept Elect Engn, Jaipur 302017, India
关键词
Reactive power; Job shop scheduling; Vehicle-to-grid; Batteries; Planning; State of charge; Avalanche photodiodes; Active power dispatch; distribution system reconfiguration; electric vehicles; reactive power dispatch; DEMAND; RECONFIGURATION; PENETRATION; INTEGRATION; MANAGEMENT;
D O I
10.1109/TIA.2020.2986185
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Electric vehicles (EVs) offer a significant potential towards developing transportation systems with low carbon footprint. However, a proper accommodation of EVs poses significant challenges to distribution system planning and operations. This article aims to investigate EVs scheduling strategies with cost benefit analysis (CBA) to obtain optimal planning scheme. EVs can either behave as load or as distributed energy resource, a concept referred to as vehicle to grid (V2G). A V2G capable vehicle can offer active power support and reactive power support to the distribution system. To maximize the benefits of integrating EVs in the distribution system, charging of EVs needs to be coordinated with the available V2G technology. In this study, two scheduling strategies are implemented considering active power dispatch (APD) and reactive power dispatch (RPD) from the EVs. The objective of both the strategies is to minimize losses in the system by utilizing V2G operation of the EVs. APD based strategy minimize losses by optimal charging and discharging of the EVs. On the other hand, RPD based strategy minimize losses by optimal charging and reactive power injection from the EVs. Furthermore, cost and benefit analysis of developed EVs scheduling strategies is presented from the planning perspective. Finally, the constructive influence of distribution system reconfiguration (DSR) is evaluated on operation and planning of the system with two different scheduling strategies. Simulations are conducted on a 33-bus distribution system to demonstrate the effectiveness and feasibility of the proposed approach.
引用
收藏
页码:5963 / 5973
页数:11
相关论文
共 50 条
[41]   Development of V2G and G2V Power Profiles and Their Implications on Grid Under Varying Equilibrium of Aggregated Electric Vehicles [J].
Jain, Prateek ;
Jain, Trapti .
INTERNATIONAL JOURNAL OF EMERGING ELECTRIC POWER SYSTEMS, 2016, 17 (02) :101-115
[42]   Coordinated scheduling strategy of electric vehicles for peak shaving considering V2G price incentive [J].
Wang M. ;
Lü L. ;
Xiang Y. .
Dianli Zidonghua Shebei/Electric Power Automation Equipment, 2022, 42 (04) :27-33and85
[43]   Anonymous Key-Agreement Protocol for V2G Environment Within Social Internet of Vehicles [J].
Ahmed, Shafiq ;
Kumari, Saru ;
Saleem, Muhammad Asad ;
Agarwal, Kadambri ;
Mahmood, Khalid ;
Yang, Ming-Hour .
IEEE ACCESS, 2020, 8 :119829-119839
[44]   A Bidirectional Isolated Charger for Electric Vehicles in V2G Systems with the Capacity to Provide Ancillary Services [J].
Mejia-Ruiz, G. ;
Paternina, M. R. A. ;
Rodriguez, J. R. ;
Zamora, A. ;
Bolivar-Ortiz, G. ;
Toledo-Santos, C. .
2020 52ND NORTH AMERICAN POWER SYMPOSIUM (NAPS), 2021,
[45]   PV-Powered Charging Station for Electric Vehicles: Power Management with Integrated V2G [J].
Wang, Dian ;
Sechilariu, Manuela ;
Locment, Fabrice .
APPLIED SCIENCES-BASEL, 2020, 10 (18)
[46]   A Novel Stochastic Blockchain-Based Energy Management in Smart Cities Using V2S and V2G [J].
Zhang, Lei ;
Cheng, Long ;
Alsokhiry, Fahad ;
Mohamed, Mohamed A. .
IEEE TRANSACTIONS ON INTELLIGENT TRANSPORTATION SYSTEMS, 2023, 24 (01) :915-922
[47]   Electric Vehicles Charging Algorithm with Peak Power Minimization, EVs Charging Power Minimization, Ability to Respond to DR Signals and V2G Functionality [J].
Benysek, Grzegorz ;
Waskowicz, Bartosz ;
Dylewski, Robert ;
Jarnut, Marcin .
ENERGIES, 2022, 15 (14)
[48]   A Charge/Discharge Plan for Electric Vehicles in an Intelligent Parking Lot Considering Destructive Random Decisions, and V2G and V2V Energy Transfer Modes [J].
Alinejad, Mahyar ;
Rezaei, Omid ;
Habibifar, Reza ;
Azimian, Mahdi .
SUSTAINABILITY, 2022, 14 (19)
[49]   On-Board Single-Phase Integrated Electric Vehicle Charger With V2G Functionality [J].
Semsar, Sepehr ;
Soong, Theodore ;
Lehn, Peter W. .
IEEE TRANSACTIONS ON POWER ELECTRONICS, 2020, 35 (11) :12072-12084
[50]   Photovoltaic Charging Dock for Electric Mobility with G2V and V2G Technology [J].
Zahira R. ;
Hussain M.I.I. ;
Suresh S. ;
Bharanigha V. ;
Pramila V. .
International Journal of Vehicle Structures and Systems, 2023, 15 (02) :171-175