Effective Voltage Balance Control for Bipolar-DC-Bus-Fed EV Charging Station With Three-Level DC–DC Fast Charger
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Effective Voltage Balance Control for Bipolar-DC-Bus-Fed EV Charging Station With Three-Level DC–DC Fast Charger
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Figure 2 from Effective voltage balance control for three-level bidirectional dc-dc converter based electric vehicle fast charger
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Design of a PV‐fed electric vehicle charging station with a combination of droop and master‐slave control strategy - Krishnan Nair - 2023 - Energy Storage - Wiley Online Library
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A comprehensive review on isolated and non-isolated converter configuration and fast charging technology: For battery and plug in hybrid electric vehicle - ScienceDirect
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Model predictive controlled three-level bidirectional converter with voltage balancing capability for setting up EV fast charging stations in bipolar DC microgrid
![](https://www.researchgate.net/publication/351502251/figure/fig1/AS:1022452670935040@1620783121796/The-architecture-of-the-PV-fed-DC-bus-charging-station.png)
The architecture of the PV-fed DC bus charging station.
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Effective Voltage Balance Control for Bipolar-DC-Bus-Fed EV Charging Station With Three-Level DC–DC Fast Charger
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Model predictive controlled three-level bidirectional converter with voltage balancing capability for setting up EV fast charging stations in bipolar DC microgrid
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Design and control of utility grid-tied bipolar DC microgrid