Improved droop control strategy for parallel connected power electronic converter based distributed generation sources in an Islanded Microgrid

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Date

2021

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Elsevier Ltd

Abstract

The control and protection are critically essential to facilitate the stable operation of an island microgrid. To accomplish the exact power sharing in an islanded AC microgrid, the frequency and the voltage restoration need to be sustained. In this regard, a robust control strategy pooling an improved droop with a virtual impedance control based droop control for power sharing with f/V restoration is proposed in this article. The proposed droop controller state-space small signal modeling and an investigation for the total microgrid system are presented in this article. Meanwhile, the robustness of the strategy is escalated for a step change in the system power loads. The overall controller performance has been tested in the hardware-in-loop (HIL) test-bed. © 2021 Elsevier B.V.

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Keywords

Controllers, Distributed power generation, Microgrids, Power control, Power converters, Robust control, Distributed generation system, Droop control, Hardware in loop, Improved droop control strategies, Island modes, Micro grid, Parallel-connected, Power electronics converters, Power sharing, Virtual complex impedance, Restoration

Citation

Electric Power Systems Research, 2021, 201, , pp. -

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