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March 1, 2026Turkish Journal of Electrical Power and Energy Systems0 citationsOpen Access

Performance Analysis of a Grid-Integrated Wind Energy Conversion System Using Static Synchronous Compensator for Load Variation

AAArif AhammadShahjalal University of Science and TechnologySUShashwtee Deb UrmiShahjalal University of Science and Technology

Key Points

  • This research aims to analyze the performance of a grid-integrated wind energy conversion system using a static synchronous compensator for reactive power management.
  • Comparative analysis of two controllers: Proportional-Integral (PI) and hybrid PI + Fuzzy logic.
  • Evaluation of system behavior under resistive-inductive and nonlinear loads.
  • Simulation and analysis conducted using MATLAB/Simulink.
  • The STATCOM effectively absorbs or injects reactive power, maintaining power factor and voltage stability.
  • Dynamic reactive power support is achieved, adhering to IEEE standards with reduced harmonic distortion.

Abstract

Wind power is a promising renewable energy option that will play a major role in future power generation. However, this also introduces integration-related power quality challenges, primarily reactive power compensation and voltage control. Due to their instability and high reactive power consumption, induction machines are mostly utilized as generators in wind-powered generation. In reactive power compensation, the goal of adjusting controller parameters for a pulse width modulated converter-based static synchronous compensator (STATCOM) is to improve the system’s performance in controlling voltage and power factor. This article presents a comparative analysis between two controllers, which are the conventional Proportional-Integral (PI) controller and the proposed hybrid (PI + Fuzzy logic) controller. A STATCOM should be able to absorb or inject the required amount of reactive power into the grid while operating in inductive mode. The study investigates the dynamic behavior of the system when subjected to both resistive-inductive and nonlinear and time-varying loads. To lessen the amount of burden from the grid, the STATCOM will help to compensate for the reactive power from the grid by keeping it at zero and ensuring all the reactive power demanded by the load will be supplied by the STATCOM, while only the active power demanded by the load will be supplied by the grid. Regarding the performance of the proposed setup in wind and grid conditions, simulation and analysis are executed via MATLAB/Simulink. The results show whether STATCOM operates to sustain dynamic reactive power and mitigate total harmonic distortion to a level acceptable by Institute of Electrical and Electronics Engineers (IEEE) standards.

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Cite This Study

Ahammad et al. (2026) studied this question.

synapsesocial.com/papers/69a3d79dec16d51705d2de61https://doi.org/10.5152/tepes.2026.25014
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Also Consider

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