@inproceedings{2d66590888a241e996a645428ade70e7,
title = "Single-Phase Grid Forming Control Strategy for an Isolated and Bidirectional EV Battery Charger",
abstract = "This paper proposes a novel approach to implement a single-phase grid-forming (GFM) control strategy in an isolated two-stage DC-AC structure, intended for an Electric Vehicle Bidirectional Charger (EVBC). The structure is composed of a voltage source inverter (VSI) cascaded to a dual-active-bridge series-resonant (DABSR) DC-DC converter. In the proposed approach, the VSI implements the GFM strategy whereas the DABSR controls the DC-Link voltage. Since VSI implements a GFM control strategy, the {"}Vehicle-to-everything{"}(V2X) functionalities can be validated with a unique control strategy. Design criteria are given for the DC-Link voltage controller, active-reactive power controllers and droop controllers. The control strategy was validated in a 2.2kW test setup and for a stand-alone vehicle-to-home (V2H) mode.",
keywords = "DC-AC, Electric Vehicle Bidirectional Charger (EVBC), Grid forming (GFM), active power, isolated, reactive power, single-phase",
author = "Erick Pantaleon and Rosas, \{Damian Sal Y.\} and Julio Tafur",
note = "Publisher Copyright: {\textcopyright} 2024 IEEE.; 2024 Energy Conversion Congress and Expo Europe, ECCE Europe 2024 ; Conference date: 02-09-2024 Through 06-09-2024",
year = "2024",
doi = "10.1109/ECCEEurope62508.2024.10751841",
language = "English",
series = "ECCE Europe 2024 - Energy Conversion Congress and Expo Europe, Proceedings",
publisher = "Institute of Electrical and Electronics Engineers Inc.",
booktitle = "ECCE Europe 2024 - Energy Conversion Congress and Expo Europe, Proceedings",
}