Energies (Mar 2023)

Fuzzy-Based Efficient Control of DC Microgrid Configuration for PV-Energized EV Charging Station

  • Dominic Savio Abraham,
  • Balaji Chandrasekar,
  • Narayanamoorthi Rajamanickam,
  • Pradeep Vishnuram,
  • Venkatesan Ramakrishnan,
  • Mohit Bajaj,
  • Marian Piecha,
  • Vojtech Blazek,
  • Lukas Prokop

DOI
https://doi.org/10.3390/en16062753
Journal volume & issue
Vol. 16, no. 6
p. 2753

Abstract

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Electric vehicles (EVs) are considered as the leading-edge form of mobility. However, the integration of electric vehicles with charging stations is a contentious issue. Managing the available grid power and bus voltage regulation is addressed through renewable energy. This work proposes a grid-connected photovoltaic (PV)-powered EV charging station with converter control technique. The controller unit is interfaced with the renewable energy source, bidirectional converter, and local energy storage unit (ESU). The bidirectional converter provides a regulated output with a fuzzy logic controller (FLC) during charging and discharging. The fuzzy control is implemented to maintain a decentralized power distribution between the microgrid DC-link and ESU. The PV coupled to the DC microgrid of the charging station is variable in nature. Hence, the microgrid-based charging is examined under a range of realistic scenarios, including low, total PV power output and different state of charge (SOC) levels of ESU. In order to accomplish the effective charging of EV, a decentralized energy management system is created to control the energy flow among the PV system, the battery, and the grid. The proposed controller’s effectiveness is validated using a simulation have been analyzed using MATLAB under various microgrid situations. Additionally, the experimental results are validated under various modes of operation.

Keywords