• Home
  • Information
  • Editorial Board
  • Submission Guidelines
  • Template for PCMP
  • Ethics & Disclosures
Citation:Sen Huang,Jun Yao,Member,et al.Transient stability analysis and control strategy for paralleled grid-forming renewable power generations under symmetric faults[J].Protection and Control of Modern Power Systems,2025,V10(05):165-180[Copy]
Print       PDF       View/Add Comment      Download reader       Close
←Prev|Next→ Archive    Advanced Search
Click: 1741   Download: 5183 本文二维码信息
Transient stability analysis and control strategy for paralleled grid-forming renewable power generations under symmetric faults
Sen Huang, Jun Yao, Member, IEEE, Wenwen He, Dong Yang, and Hai Xie
Font:+|Default|-
Abstract:
Similar to synchronous generators (SGs), symmetrical short-circuit faults can reduce the stability margin of grid-forming renewable power generation (GFM-RPG), thereby heightening the risk of transient instability. While existing studies primarily examine single-machine infinite-bus systems, this work explores transient stability challenges inherent in paralleled GFM-RPG systems. First, through rigorous mathematical derivation, it establishes that the transient characteristics of paralleled systems can still be effectively characterized by a second-order motion equation. Subsequently, by applying the extended equal area criterion (EEAC) and numerical solutions to differential equations, the study uncovers the governing principles behind the variations in the critical clearing angle (CCA) and critical clearing time (CCT) for the paralleled GFM-RPG system under various operating conditions. Finally, to mitigate potential instability risks, two corrective strategies, namely adaptive damping enhancement and power switching control, are proposed to improve the transient stability of the paralleled system during symmetrical faults. Simulation results confirm the accuracy of the theoretical analysis and demonstrates the effectiveness of the proposed strategy.
Key words:  Grid-forming, renewable power generation, transient, stability control strategy.
DOI:10.23919/PCMP.2024.000289
Fund:This work is supported by Joint Research Fund in Smart Grid (No. U1966208) under cooperative agreement between the National Natural Science Foundation of China and State Grid Corporation of China.
Protection and Control of Modern Power Systems
Add: No. 17 Shangde Road, Xuchang 461000, Henan Province, P. R. China
E-mail: pcmp@vip.126.com     Tel: 0374-3212254/2234
  copyright Power Kingdom 2022.豫ICP备17035427号-1