LAPSE:2023.16982
Published Article
LAPSE:2023.16982
An Enhanced Control Strategy for Mitigation of State-Transition Oscillation Phenomena in Grid-Forming Self-Synchronized Converter System with Islanded Power System
Ki Ryong Kim, Sangjung Lee, Jong-Pil Lee, Jaesik Kang
March 6, 2023
Abstract
This paper proposes an enhanced control strategy for mitigating state-transition oscillations in active and reactive power responses of self-synchronized converter system to secure the islanded power system stability. The self-synchronized converter is well known for “grid-forming” that is able to operate to stand-alone mode (SAM) providing grid voltage and frequency without phase synchronization units. Although the grid-forming (GFM) is self-synchronized, the inherent synchronization principle causes system degradation in which should maintain a point of common coupling (PCC) voltage for critical loads as well as transitions from grid-connected mode (GCM) to SAM and vice versa. Therefore, this paper focuses on resolving the inherent oscillatory issues in GFM self-synchronized converter system (especially adopted ‘synchronverter’ principle), and proposes a control strategy for controllability improvement based on stability analysis for smooth state-transition under islanded power system. The efficacy of the proposed control method is verified through a high-fidelity electromagnetic transient (EMT) simulation with case studies on 30kW synchronverter system and further experimental hardware-in-loop system (HILS) test with Opal-RT (OP-5707) platform.
Keywords
grid-forming converter, self-synchronized converter, synchronverter
Suggested Citation
Kim KR, Lee S, Lee JP, Kang J. An Enhanced Control Strategy for Mitigation of State-Transition Oscillation Phenomena in Grid-Forming Self-Synchronized Converter System with Islanded Power System. (2023). LAPSE:2023.16982
Author Affiliations
Kim KR: Power Conversion System Research Center, Smart Grid Research Division, Korea Electrotechnology Research Institute, Gwangju 61751, Korea [ORCID]
Lee S: Power Conversion System Research Center, Smart Grid Research Division, Korea Electrotechnology Research Institute, Gwangju 61751, Korea
Lee JP: Power Conversion System Research Center, Smart Grid Research Division, Korea Electrotechnology Research Institute, Gwangju 61751, Korea
Kang J: Power Conversion System Research Center, Smart Grid Research Division, Korea Electrotechnology Research Institute, Gwangju 61751, Korea [ORCID]
Journal Name
Energies
Volume
14
Issue
24
First Page
8453
Year
2021
Publication Date
2021-12-14
ISSN
1996-1073
Version Comments
Original Submission
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PII: en14248453, Publication Type: Journal Article
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LAPSE:2023.16982
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https://doi.org/10.3390/en14248453
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