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Article

SST-Based Grid Reinforcement for Electromobility Integration in Distribution Grids

by
Charukeshi Joglekar
1,*,†,
Benedict Mortimer
2,*,†,
Ferdinanda Ponci
1,*,
Antonello Monti
1,3 and
Rik W. De Doncker
2
1
Institute for Automation of Complex Power Systems, E.ON Energy Research Center, RWTH Aachen University, 52074 Aachen, Germany
2
Institute for Power Generation and Storage Systems (PGS), E.ON Energy Research Center, RWTH Aachen University, 52074 Aachen, Germany
3
Center for Digital Energy Aachen, Fraunhofer FIT, 52074 Aachen, Germany
*
Authors to whom correspondence should be addressed.
These authors contributed equally to this work.
Energies 2022, 15(9), 3202; https://doi.org/10.3390/en15093202
Submission received: 31 March 2022 / Revised: 22 April 2022 / Accepted: 24 April 2022 / Published: 27 April 2022

Abstract

Electric Vehicles (EVs) are gaining acceptance due to the advantages they offer in the reduction of nitrogen oxide and carbon dioxide emissions. The need for emission reduction and the potential of EVs for these reductions is reflected in the current sustainable mobility policies of the EU as well as the German government. Increasing the penetration of EVs in the grid requires an expansion of EV charging infrastructure, which in turn requires either grid reinforcement or solutions for more efficient use of existing infrastructure to avoid or postpone grid reinforcement. Distribution transformers face increased loading due to EV charging and need to be protected from overloading during peak load periods to ensure continuity of service. Therefore, transformers are one of the components that are upgraded or replaced as a part of grid reinforcement. In this paper, we propose the connection of a Solid-State Transformers (SST) between two buses operating at the same-voltage level as an alternative to replacement or upgrading of conventional transformer as well as to prevent their overloading. We analyse how the proposed topology can be useful to reduce the impact of EV integration on the overloading of distribution transformers and node voltage violations in the distribution grid.
Keywords: electric vehicle charging stations; solid-state transformers; distribution grid reinforcement; distribution grid power-flow electric vehicle charging stations; solid-state transformers; distribution grid reinforcement; distribution grid power-flow

Share and Cite

MDPI and ACS Style

Joglekar, C.; Mortimer, B.; Ponci, F.; Monti, A.; De Doncker, R.W. SST-Based Grid Reinforcement for Electromobility Integration in Distribution Grids. Energies 2022, 15, 3202. https://doi.org/10.3390/en15093202

AMA Style

Joglekar C, Mortimer B, Ponci F, Monti A, De Doncker RW. SST-Based Grid Reinforcement for Electromobility Integration in Distribution Grids. Energies. 2022; 15(9):3202. https://doi.org/10.3390/en15093202

Chicago/Turabian Style

Joglekar, Charukeshi, Benedict Mortimer, Ferdinanda Ponci, Antonello Monti, and Rik W. De Doncker. 2022. "SST-Based Grid Reinforcement for Electromobility Integration in Distribution Grids" Energies 15, no. 9: 3202. https://doi.org/10.3390/en15093202

APA Style

Joglekar, C., Mortimer, B., Ponci, F., Monti, A., & De Doncker, R. W. (2022). SST-Based Grid Reinforcement for Electromobility Integration in Distribution Grids. Energies, 15(9), 3202. https://doi.org/10.3390/en15093202

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