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DOE OSTI · 2575619

Frequency Control and Disturbance Containment Using Grid-Forming Embedded Storage Networks

Abstract

The paper presents a distributed approach for operating a network of inverter-based energy storage resources embedded in a bulk power system. Departing from their traditional role of steady-state reserves, the storage assets in the network are utilized as frequency-responsive resources shaping system dynamics. The power electronics converter systems interfacing the storage resources are equipped with local controllers designed to respond under transient disturbances. To this end, a safety-constrained distributed control strategy is explored. The paper compares the performance of converter-interfaced grid-forming and grid-following storage networks for fast frequency control and disturbance containment/localization. Sensitivity studies are performed to study the impact of storage size, steady-state dispatch, and controller design on dynamic performance. The findings are presented through case studies with results from the IEEE test systems.

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BibTeXRIS

Chatterjee, Kaustav (ORCID:0000000153273860), Hossain, Ramij Raja (ORCID:0000000302247245), Nandanoori, Sai Pushpak (ORCID:0000000280065394), Kundu, Soumya (ORCID:0000000215758557), Baldwin, Diane A., Melton, Ronald B. (ORCID:0000000227040681). 2025-02-20. Frequency Control and Disturbance Containment Using Grid-Forming Embedded Storage Networks. https://www.osti.gov/biblio/2575619

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