LAPSE:2023.11463
Published Article

LAPSE:2023.11463
Medium-Voltage DC-DC Converter Topologies for Electric Bus Fast Charging Stations: State-of-the-Art Review
February 27, 2023
Abstract
With the expansion of E-mobility technology, the demand for Medium-Voltage (MV) Electric Buses (E-buses) charging infrastructure has significantly increased. In this regard, the effective connection of E-bus chargers to a medium voltage power grid is essential to provide fast charging and carry out multiple charging processes simultaneously. One of the main building blocks for E-bus charging is the DC-DC converter stage responsible for regulating the power flow and matching the different voltage and power levels. Accordingly, this paper presents a comprehensive review of DC-DC converter topologies applicable to MV E-bus fast charging. This review discusses and compares the basic isolated DC-DC converter topologies. In addition, the DC-DC converters are classified based on their conversion stages. Moreover, isolated DC-DC converter topologies applicable for MV E-bus fast charging applications, including Dual Active Bridge (DAB) modular-based structure converter and Modular Multilevel Converter (MMC)-based DAB, are discussed where the merits and demerits of each topology are highlighted. Moreover, this review illustrates how DAB converters are employed in different power level applications through the multimodule converter or the MMC-based DAB structure. Furthermore, the challenges and required features for MV DC-DC converter topologies are discussed.
With the expansion of E-mobility technology, the demand for Medium-Voltage (MV) Electric Buses (E-buses) charging infrastructure has significantly increased. In this regard, the effective connection of E-bus chargers to a medium voltage power grid is essential to provide fast charging and carry out multiple charging processes simultaneously. One of the main building blocks for E-bus charging is the DC-DC converter stage responsible for regulating the power flow and matching the different voltage and power levels. Accordingly, this paper presents a comprehensive review of DC-DC converter topologies applicable to MV E-bus fast charging. This review discusses and compares the basic isolated DC-DC converter topologies. In addition, the DC-DC converters are classified based on their conversion stages. Moreover, isolated DC-DC converter topologies applicable for MV E-bus fast charging applications, including Dual Active Bridge (DAB) modular-based structure converter and Modular Multilevel Converter (MMC)-based DAB, are discussed where the merits and demerits of each topology are highlighted. Moreover, this review illustrates how DAB converters are employed in different power level applications through the multimodule converter or the MMC-based DAB structure. Furthermore, the challenges and required features for MV DC-DC converter topologies are discussed.
Record ID
Keywords
dual active bridge, fast charging, full-bridge, half-bridge, modular multilevel converter, multimodule converter, single-stage conversion, sub-modules, two-stage conversion
Subject
Suggested Citation
ElMenshawy M, Massoud A. Medium-Voltage DC-DC Converter Topologies for Electric Bus Fast Charging Stations: State-of-the-Art Review. (2023). LAPSE:2023.11463
Author Affiliations
ElMenshawy M: Department of Electrical Engineering, Qatar University, University Street, Doha 2713, Qatar
Massoud A: Department of Electrical Engineering, Qatar University, University Street, Doha 2713, Qatar [ORCID]
Massoud A: Department of Electrical Engineering, Qatar University, University Street, Doha 2713, Qatar [ORCID]
Journal Name
Energies
Volume
15
Issue
15
First Page
5487
Year
2022
Publication Date
2022-07-28
ISSN
1996-1073
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Original Submission
Other Meta
PII: en15155487, Publication Type: Review
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LAPSE:2023.11463
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https://doi.org/10.3390/en15155487
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Feb 27, 2023
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