Search NASA⌕ Search

DOE OSTI · 2558945

Quantitative Trade-Off in Distributed Secondary Control for Autonomous AC Microgrids

Abstract

In this paper, we propose to quantify the trade-off between voltage regulation and reactive power sharing in autonomous AC microgrids with distributed secondary control. It is known that voltage regulation and reactive power sharing in droop-controlled autonomous AC microgrids are two conflicting control objectives that present a natural trade-off between voltage regulation towards the voltage magnitude reference and reactive power sharing accuracy. This trade-off is commonly shown qualitatively without sufficient quantification. In this work, to quantify the trade-off between the two objectives, we focus on distributed secondary control and utilize regression and polynomial surface fitting to identify the requisite parameter area to satisfy the predefined error bands for voltage magnitude regulation and reactive power sharing. Extensive case studies are presented to validate the proposed method.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Liu, Zhong, Lu, Xiaonan, Leon-Salas, Walter, Tan, Jin (ORCID:0000000205997730). 2025-02-10. Quantitative Trade-Off in Distributed Secondary Control for Autonomous AC Microgrids. https://doi.org/10.1109/ecce55643.2024.10860753

Cite the original work for its findings. Save a collection to share your selection of sources.