
A New Control Strategy for Energy Management of Bidirectional Chargers for Electric Vehicles to Minimize Peak Load in Low-Voltage Grids with PV Generation
Aufsatz

Zusammenfassung
This paper introduces a new bidirectional vehicle-to-grid (V2G) control strategy for energy
management of V2G charging points equipped with photovoltaic systems (PVs), considering the
interaction between V2G chargers, electric vehicle (EV) owners, and the network operator. The
proposed method aims to minimize peak load, grid infeed power, feeder loading, and transformer
loading by scheduling EVs charging and discharging. The simulation experiments take into account
three EV battery capacities as well as two levels of EV penetration. In order to validate the effectiveness
of the proposed approach, five scenarios are studied in a single feeder of a low-voltage (LV)
distribution network in DIgSILENT PowerFactory, which comprises a combination of residential
and commercial loads as well as PV systems. Simulation results demonstrate that the proposed V2G
strategy improves the paper’s objectives by providing ancillary services to the grid.
Schlagworte
electric vehicle
vehicle-to-grid
charging station
distribution network
photovoltaic system
vehicle-to-grid
charging station
distribution network
photovoltaic system
DDC-Klassifikation
388 Verkehr
Erschienen in
World Electric Vehicle Journal. MDPI; Basel (2022). 13, 11, 218, 13 S.. ISSN: 2032-6653, DOI: 10.3390/wevj13110218
Projektförderung
Immediate Clean Air Program 2017–2020 / Federal Ministry for Economic Affairs and Energy / 01MZ18008B
Einrichtung
Fachbereich Ingenieurwesen
Link zur Veröffentlichung
Sammlungen
- Publikationen [130]
BibTeX
@article{Fakhrooeian2022,
author={Fakhrooeian, Parnian and Pitz, Volker},
title={A New Control Strategy for Energy Management of Bidirectional Chargers for Electric Vehicles to Minimize Peak Load in Low-Voltage Grids with PV Generation},
journal={World Electric Vehicle Journal},
volume={13},
number={11},
pages={13 S.},
month={11},
year={2022},
publisher={MDPI; Basel},
school={Hochschule RheinMain, Wiesbaden},
url={https://hlbrm.pur.hebis.de/xmlui/handle/123456789/111},
doi={10.25716/pur-89}
}