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February 14, 2026Energies0 citationsOpen Access

Identification and Mitigation Method of Harmonic Resonance in Offshore Wind Power Systems Based on dq-Domain Modal Analysis

HWHuajia WangYZYan ZhangWCWenbin Ci

Key Points

  • The study aims to investigate harmonic resonance challenges in offshore wind power systems and propose effective mitigation techniques through dq-domain modal analysis.
  • Elucidation of limitations in conventional modal analysis methods.
  • Development of a resonance analysis model for offshore wind systems.
  • Calculation of the complete nodal admittance matrix.
  • Performance of dq-domain resonance analysis to assess resonance modes.
  • Validation of findings through experimental tests.
  • The power control loop's proportional gain significantly affects resonance modes.
  • Dq-domain modal analysis enables effective tuning of controller parameters.
  • The proposed strategies offer a cost-effective solution for suppressing resonance.

Abstract

Harmonic resonance challenges have intensified in modern power grids, primarily due to the high penetration of converter-based offshore wind energy. Traditional modal analysis methods conducted in the abc reference frame are often constrained by complex coordinate transformations and laborious analytical procedures. Therefore, research into dq-domain modal analysis and mitigation techniques is essential. This paper first elucidates the limitations of conventional modal analysis and outlines the fundamental principles of the dq-domain approach, validating its effectiveness through a three-bus test system. Subsequently, a resonance analysis model for offshore wind systems is established to derive the complete nodal admittance matrix. A dq-domain resonance analysis is then performed, and resonance is mitigated by optimizing the control parameters. Finally, the proposed dq-domain modal analysis method and suppression strategy are validated using a laboratory-scale experimental testbed. The results indicate that the proportional gain of the power control loop (KPP) significantly influences the system’s resonance modes. Fine-tuning controller parameters via modal analysis provides an active, flexible, and cost-effective solution for resonance suppression.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/699011172ccff479cfe577dahttps://doi.org/10.3390/en19040947
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