LAPSE:2023.12989
Published Article

LAPSE:2023.12989
Modeling and Analysis of the Harmonic Interaction between Grid-Connected Inverter Clusters and the Utility Grid
February 28, 2023
Abstract
The virtual synchronous generator (VSG) is a promising technology for future utility grids, since it can mimic the output characteristics of a synchronous generator, which provides the necessary inertia to a utility grid. However, the large-scale application of VSGs is limited due to the harmonic interaction between VSGs and the utility grid. Therefore, in order to investigate the stability issue as well as improve the practical application for large-scale power stations, the harmonic interaction mechanism between the VSG cluster and the utility grid is addressed. Firstly, the output impedance model of a single VSG is established, and it is found that the resonance frequency is related to parameters including the output filter, controller, and grid impedance. On this basis, the capacitor current control for a grid-connected inverter based on a VSG is proposed to enhance the resonance suppression. Furthermore, the output impedance of the VSG cluster is established, which reveals the harmonic interaction characteristics between the VSG cluster and the utility grid. In addition, in order to suppress the resonance and improve the stability, an inner-loop control strategy of VSG is introduced. Finally, the simulation and experimental results verified the correctness of the established modeling and analysis of the harmonic interaction between the clustered VSGs and the utility grid. The results show that the proposed impedance model is correct and can predict the resonant point accuracy (which is around 2.3 kHz in the simulation and experimental cases). The total harmonic distortion (THD) can be reduced to 3.2% which meets the requirements of IEEE standard 519.
The virtual synchronous generator (VSG) is a promising technology for future utility grids, since it can mimic the output characteristics of a synchronous generator, which provides the necessary inertia to a utility grid. However, the large-scale application of VSGs is limited due to the harmonic interaction between VSGs and the utility grid. Therefore, in order to investigate the stability issue as well as improve the practical application for large-scale power stations, the harmonic interaction mechanism between the VSG cluster and the utility grid is addressed. Firstly, the output impedance model of a single VSG is established, and it is found that the resonance frequency is related to parameters including the output filter, controller, and grid impedance. On this basis, the capacitor current control for a grid-connected inverter based on a VSG is proposed to enhance the resonance suppression. Furthermore, the output impedance of the VSG cluster is established, which reveals the harmonic interaction characteristics between the VSG cluster and the utility grid. In addition, in order to suppress the resonance and improve the stability, an inner-loop control strategy of VSG is introduced. Finally, the simulation and experimental results verified the correctness of the established modeling and analysis of the harmonic interaction between the clustered VSGs and the utility grid. The results show that the proposed impedance model is correct and can predict the resonant point accuracy (which is around 2.3 kHz in the simulation and experimental cases). The total harmonic distortion (THD) can be reduced to 3.2% which meets the requirements of IEEE standard 519.
Record ID
Keywords
harmonic interaction, output impedance, resonance, virtual synchronous generator
Subject
Suggested Citation
Ren L, Guo H, Dou Z, Wang F, Zhang L. Modeling and Analysis of the Harmonic Interaction between Grid-Connected Inverter Clusters and the Utility Grid. (2023). LAPSE:2023.12989
Author Affiliations
Ren L: School of Mechatronics Engineering and Automation, Shanghai University, Shanghai 200444, China [ORCID]
Guo H: School of Mechatronics Engineering and Automation, Shanghai University, Shanghai 200444, China [ORCID]
Dou Z: State Grid Shanghai Comprehensive Energy Service Co., Ltd., Shanghai 200023, China
Wang F: School of Mechatronics Engineering and Automation, Shanghai University, Shanghai 200444, China [ORCID]
Zhang L: Instituto Superior Técnico, University of Lisbon, 999022 Lisbon, Portugal
Guo H: School of Mechatronics Engineering and Automation, Shanghai University, Shanghai 200444, China [ORCID]
Dou Z: State Grid Shanghai Comprehensive Energy Service Co., Ltd., Shanghai 200023, China
Wang F: School of Mechatronics Engineering and Automation, Shanghai University, Shanghai 200444, China [ORCID]
Zhang L: Instituto Superior Técnico, University of Lisbon, 999022 Lisbon, Portugal
Journal Name
Energies
Volume
15
Issue
10
First Page
3490
Year
2022
Publication Date
2022-05-10
ISSN
1996-1073
Version Comments
Original Submission
Other Meta
PII: en15103490, Publication Type: Journal Article
Record Map
Published Article

LAPSE:2023.12989
This Record
External Link

https://doi.org/10.3390/en15103490
Publisher Version
Download
Meta
Record Statistics
Record Views
194
Version History
[v1] (Original Submission)
Feb 28, 2023
Verified by curator on
Feb 28, 2023
This Version Number
v1
Citations
Most Recent
This Version
URL Here
https://psecommunity.org/LAPSE:2023.12989
Record Owner
Auto Uploader for LAPSE
Links to Related Works
