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March 6, 2026IET conference proceedings.0 citations

Impedance-based sensitivity analysis of wind turbine generator

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GMGermano Rugendo MugambiBNBehnam NouriJZJosé Miguel Sosa Zúñiga

Key Points

  • The aim is to analyze how control parameters affect the harmonic stability of wind turbine generators.
  • Performed impedance-based sensitivity analysis on an 8 MW Type-IV wind turbine generator.
  • Utilized a detailed wind turbine generator model and an EMT-based impedance measurement tool.
  • Investigated the sensitivity of outer and inner control loops and various power set-points.
  • Different control gains significantly impact impedance across varying degrees and frequency ranges.
  • Adjusting specific control parameters reshapes the wind turbine generator impedance profile.
  • Improved system-level marginal stability and operational stability achieved through parameter adjustments.

Abstract

With increasing penetration of converter-based systems such as HVDC, inverter-based resources (IBRs) and FACTs, harmonic stability of interconnected networks has gained significant attention from transmission system operators and stakeholders. This attention stems from potential multi-scale interactions among interconnected systems that can lead to poorly damped oscillations and resonances. Impedance-based stability analysis is one of the preferred methods for harmonic stability studies due to its clearly defined metrics and ability to obtain impedance characteristics from black-box models. However, a critical limitation is the inability to identify root causes of potential instability and determine control parameter mitigation measures due to limited parameter knowledge in black-box models. This study addresses this limitation by performing impedance-based sensitivity analysis on control parameters and setpoints of an 8 MW Type-IV wind turbine generator (WTG) using a detailed WTG model and EMT-based impedance measurement tool. The sensitivity of various parameters in outer and inner control loops and power set-points is investigated to identify the most impactful ones. Results demonstrate that different control gains significantly impact the impedance in varying degrees and frequency ranges. Adjusting these influential control parameters facilitates reshaping the WTG impedance profile, improving system-level marginal stability, facilitating root-cause analysis, and enhancing operational stability.

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Cite This Study

Mugambi et al. (2026) studied this question.

synapsesocial.com/papers/69aa6ee2531e4c4a9ff5905dhttps://doi.org/10.1049/icp.2025.4571
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