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May 31, 2026Electronics1 citationsOpen Access

Flexible Grid-Connected/Off-Grid Switching Control Strategy for Storage Inverter

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JZJiran ZhuHunan Xiangdian Test Research Institute (China)KZKehui ZhouHunan Xiangdian Test Research Institute (China)HTHaiguo TangHunan Xiangdian Test Research Institute (China)

Key Points

  • To develop a control strategy for a dual-mode grid-connected/off-grid storage inverter that improves mode transition and stability.
  • Established control models for grid-connected and off-grid modes.
  • Proposed an improved adaptive active frequency drift islanding detection algorithm.
  • Conducted experiments on a storage inverter prototype to evaluate performance.
  • The proposed method reduced current total harmonic distortion during grid-connected operation.
  • Experiments showed stable operation in both grid-connected and off-grid modes.
  • The control strategy enabled rapid identification of operating conditions and efficient mode switching.

Abstract

Taking a dual-mode grid-connected/off-grid storage inverter as the research subject, control models for both grid-connected and off-grid operation modes were established. For the grid-to-off-grid transition, an improved adaptive active frequency drift islanding detection algorithm was proposed, which employs a cubic power-based detection method when frequency deviation is small to reduce positive feedback speed, and a parabola-based detection method when frequency deviation is large to enhance positive feedback speed. Compared with the traditional active frequency drift islanding detection algorithm, the proposed method can ensure islanding detection speed while effectively reducing the current total harmonic distortion during grid-connected operation. Experiments conducted on a storage inverter prototype demonstrated stable operation in both grid-connected and off-grid modes. The results indicate that the proposed control strategy enables rapid identification of operating conditions and mode switching, significantly improving the stability and reliability of the inverter during transition, thus laying a foundation for the autonomous operation of dynamic microgrids.

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Cite This Study

Zhu et al. (2026) studied this question.

synapsesocial.com/papers/6a1bd2375783ba022b6fdaf2https://doi.org/10.3390/electronics15112354
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