LAPSE:2023.23919
Published Article

LAPSE:2023.23919
Analysis of Synchronization Stability for Multi VSCs Parallel-Connected to Weak Grids by Improved Net Damping Criterion
March 27, 2023
Abstract
Recent studies show that the loss of stability for a voltage-source converter (VSC) in weak-grid connection is largely related to its synchronization unit, i.e., the phase-locked loop (PLL). This paper studies the synchronization stability of a system comprised by two VSCs in parallel connection to a weak grid. A reduced transfer function based small-signal model, which can allow for the interactions between PLL and converter outer power controls, is first proposed. Then, an improved net damping criterion is used to analyze the damping and stability characters of such system under various operating conditions and different controller configurations. Compared to the conventional net damping criterion, the used criterion has wider applicability in terms of stability judgment. Case studies show that the studied system tends to be unstable at weak-grid or heavy-loading conditions. The instability can be in the form of oscillations or monotonic divergence, in which, the latter is more likely to occur for the converters without grid voltage regulation capabilities. Besides, the net damping-based sensitivity studies can provide guidance on control tuning or design for stability enhancement. Detailed model-based time domain simulations are conducted to verify the analysis results.
Recent studies show that the loss of stability for a voltage-source converter (VSC) in weak-grid connection is largely related to its synchronization unit, i.e., the phase-locked loop (PLL). This paper studies the synchronization stability of a system comprised by two VSCs in parallel connection to a weak grid. A reduced transfer function based small-signal model, which can allow for the interactions between PLL and converter outer power controls, is first proposed. Then, an improved net damping criterion is used to analyze the damping and stability characters of such system under various operating conditions and different controller configurations. Compared to the conventional net damping criterion, the used criterion has wider applicability in terms of stability judgment. Case studies show that the studied system tends to be unstable at weak-grid or heavy-loading conditions. The instability can be in the form of oscillations or monotonic divergence, in which, the latter is more likely to occur for the converters without grid voltage regulation capabilities. Besides, the net damping-based sensitivity studies can provide guidance on control tuning or design for stability enhancement. Detailed model-based time domain simulations are conducted to verify the analysis results.
Record ID
Keywords
net damping criterion, PLL, synchronization stability, VSC, weak grid
Subject
Suggested Citation
Wang D, Zhang X, Yang L, Huang Y, Huang W, Wu C, Li S. Analysis of Synchronization Stability for Multi VSCs Parallel-Connected to Weak Grids by Improved Net Damping Criterion. (2023). LAPSE:2023.23919
Author Affiliations
Wang D: Department of Electrical Engineering, School of Automation, Wuhan University of Technology, Wuhan 430070, China [ORCID]
Zhang X: State Key Laboratory of Advanced Electromagnetic Engineering and Technology, and School of Electrical and Electronic Engineering, Huazhong University of Science and Technology, Wuhan 430074, China
Yang L: Electric Power Research Institute of Yunan, Kunming 650217, China
Huang Y: Department of Electrical Engineering, School of Automation, Wuhan University of Technology, Wuhan 430070, China
Huang W: Electric Power Dispatching and Control Center of Yunan, Kunming 650200, China
Wu C: Electric Power Dispatching and Control Center of Yunan, Kunming 650200, China
Li S: Electric Power Research Institute of Yunan, Kunming 650217, China
Zhang X: State Key Laboratory of Advanced Electromagnetic Engineering and Technology, and School of Electrical and Electronic Engineering, Huazhong University of Science and Technology, Wuhan 430074, China
Yang L: Electric Power Research Institute of Yunan, Kunming 650217, China
Huang Y: Department of Electrical Engineering, School of Automation, Wuhan University of Technology, Wuhan 430070, China
Huang W: Electric Power Dispatching and Control Center of Yunan, Kunming 650200, China
Wu C: Electric Power Dispatching and Control Center of Yunan, Kunming 650200, China
Li S: Electric Power Research Institute of Yunan, Kunming 650217, China
Journal Name
Energies
Volume
13
Issue
13
Article Number
E3316
Year
2020
Publication Date
2020-06-29
ISSN
1996-1073
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PII: en13133316, Publication Type: Journal Article
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LAPSE:2023.23919
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https://doi.org/10.3390/en13133316
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Mar 27, 2023
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