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January 18, 2026Processes0 citationsOpen Access

Analysis on the Transient Synchronization Stability of a Wind Farm with Multiple PLL-Based PMSGs

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BRBixing RenDWD. WangXZXinyao Zhu

Key Points

  • This research analyzes the transient synchronizing stability in wind farms featuring multiple PMSGs and explores the underlying mechanisms of instability.
  • Derived a reduced single-machine aggregated model from state-space matrices for stability analysis.
  • Introduced concepts of equivalent accelerating area and equivalent decelerating area for evaluation.
  • Conducted comprehensive analysis on generator dynamics, network topology, and system parameters around multi-PMSG interactions.
  • Performed case studies to validate the derived model and mechanisms.
  • Revealed key mechanisms by which multiple PMSG interactions cause transient synchronizing instability.
  • Demonstrated that line impedance ratios significantly affect transient stability characteristics.
  • Validated the accuracy of the aggregated model through case studies.

Abstract

The presence of multiple permanent magnet synchronous generators (PMSGs) results in a highly complex and high-dimensional wind-farm model, making its transient synchronizing stability characteristics insufficiently understood and difficult to analyze. This paper investigates the mechanism by which interactions among multiple wind generators trigger transient synchronizing instability in wind farms. First, considering the influence of line impedance ratios, a reduced single-machine aggregated model suitable for transient synchronizing stability analysis of a wind farm with multiple PMSGs was derived from the similarity normalization transformation of the state-space matrices. Based on the aggregated model, the concepts of equivalent accelerating area and equivalent decelerating area were introduced to evaluate transient synchronizing stability of the wind farm. Through a comprehensive analysis of the effects of the generator dynamics, number of generators, network topology, and system parameters on these indices, the mechanism by which multi-PMSG interactions induce transient synchronization instability in PMSG wind farms is revealed. Finally, case studies were conducted to validate the accuracy and applicability of the analysis.

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Cite This Study

Ren et al. (2026) studied this question.

synapsesocial.com/papers/696c7835eb60fb80d1396779https://doi.org/10.3390/pr14020321
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