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September 23, 2025Processes0 citationsOpen Access

Design and Research of an Improved Phase-Locked Loop Based on Levy-AsyLnCPSO Optimization and EA-SOGI Structure

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XKXiaoguang KongXXXiao-Qian XuGGGe Guo

Key Points

  • The proposed phase-locked loop achieves a total harmonic distortion as low as 2.8653%, showcasing its superior adaptability.
  • Simulation and experimental results validate the effectiveness of the enhanced adaptive generalized integrator in DC offset suppression.
  • The Quasi-Proportional Resonant controller improves frequency locking performance under steady-state conditions.
  • A hybrid Levy-AsyLnCPSO optimization algorithm effectively tunes the control parameters for enhanced system robustness.

Abstract

To address the challenges posed by harmonic distortion and DC offset in the power grid, this paper proposes a novel Phase-Locked Loop (PLL) architecture tailored for single-phase grid-connected systems. The design integrates an Enhanced Adaptive Second-Order Generalized Integrator (EA-SOGI) with a Quasi-Proportional Resonant (QPR) controller. The proposed EA-SOGI extends the conventional SOGI by incorporating an all-pass filter and an additional integrator, which enhance the symmetry of the orthogonal signals and effectively suppress the estimation errors caused by DC offset. In addition, the conventional PI controller is replaced by a QPR controller, whose parameters are tuned using a hybrid Levy-AsyLnCPSO optimization algorithm to improve frequency locking performance and enhance system robustness under steady-state conditions. Simulation and experimental results demonstrate that the proposed PLL achieves a Total Harmonic Distortion (THD) as low as 2.8653% based on Fast Fourier Transform (FFT) analysis, indicating superior adaptability compared to conventional PLL structures and validating its effectiveness in DC offset suppression and harmonic mitigation.

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Cite This Study

Kong et al. (2025) studied this question.

synapsesocial.com/papers/68d4759931b076d99fa6daf5https://doi.org/10.3390/pr13103036
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