An Accurate Power Control Strategy for Power-Electronics-Interfaced Distributed Generation Units Operating in a Low-Voltage Multibus Microgrid
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Abstract
In this paper, a power control strategy is proposed for a low-voltage microgrid, where the mainly resistive line impedance, the unequal impedance among distributed generation (DG) units, and the microgrid load locations make the conventional frequency and voltage droop method unpractical. The proposed power control strategy contains a virtual inductor at the interfacing inverter output and an accurate power control and sharing algorithm with consideration of both impedance voltage drop effect and DG local load effect. Specifically, the virtual inductance can effectively prevent the coupling between the real and reactive powers by introducing a predominantly inductive impedance even in a low-voltage network…
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2Topics & keywords
Topics
Keywords
- Microgrid
- Voltage droop
- AC power
- Electrical impedance
- Voltage drop
- Voltage optimisation
- Voltage regulation
- Control theory (sociology)
UN Sustainable Development Goals
- Affordable and clean energy
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