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Maximum Reactive Power Generation Method Based on Limitation of Output Capacity for Star-Connected Cascaded H-Bridge STATCOM Under Voltage Sag

Authors :
Wei, Miaoyu
Lu, Daorong
Wu, Tianhong
Hu, Haibing
Source :
IEEE Transactions on Industrial Electronics; January 2024, Vol. 71 Issue: 1 p635-645, 11p
Publication Year :
2024

Abstract

Star-connected cascaded H-bridge (SCHB) STATCOM is being widely used at medium and high voltages to support the grid by injecting positive and negative sequence current. Under balanced conditions, the rated reactive power is usually utilized to calculate the required reactive current reference based on instantaneous power theory. However, under grid voltage sag, the rated reactive power changes due to the introduced negative sequence current and extra zero sequence voltage for cluster voltage balancing, which may increase overcurrent and overmodulation risk. Therefore, determining how to derive the maximum compensable reactive power is required for SCHB STATCOM under the grid voltage sag. In this article, the quantitative relationship between the imbalanced degree of grid voltages and reactive power reference is fully explored. On this basis, the maximum reactive power is calculated under voltage sags by considering current and voltage limitations. In this calculation, a new geometrical analysis method is proposed, which makes the calculation speed faster for online calculations. Therefore, a new grid support control strategy is proposed for the SCHB STATCOM under grid voltage sag, which can effectively support the grid with the maximum output reactive power. Finally, the proposed method is verified by experimental results on a 400 V/7.5 kVar SCHB STATCOM prototype.

Details

Language :
English
ISSN :
02780046 and 15579948
Volume :
71
Issue :
1
Database :
Supplemental Index
Journal :
IEEE Transactions on Industrial Electronics
Publication Type :
Periodical
Accession number :
ejs63569758
Full Text :
https://doi.org/10.1109/TIE.2023.3245182