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Research on ILADRC Multiple Parallel PV Energy Storage GFM VSG System Control Strategy

Zuobin Zhu1( )Shumin Sun1,2
School of Electrical and Electronic Engineering, Shandong University of Technology, Zibo 255000, China
Electric Power Research Institute of State Grid Shandong Electric Power Company, Jinan 250000, China
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Abstract

Grid forimg (GFM) converters have been gradually promoted and applied in engineering practice owing to their ability to provide effective voltage and inertial support. With a high proportion of renewable energy sources being connected to the power grid, the grid-source interaction between the distributed power sources and power grid is further enhanced. To ensure the stable operation of the distributed power sources and suppress the instability of grid-source interaction in GFM inverters under a strong power grid, an improved line active disturbance rejection control (ILADRC) multiple parallel photovoltaic (PV) storage GFM virtual synchronous generator (VSG) system control strategy is proposed. First, impedance modelling of single and multiple parallel PV energy storage VSG systems is established for stability analysis using Gale circle stability criterion. Second, ILADRC method is designed, and impedance modelling of ILADRC multiple parallel PV energy storage GFM VSG system is established for stability analysis. Finally, an ILADRC multiple parallel photovoltaic energy storage GFM VSG simulation model and hardware-in-the-loop experimental platform are established for tests. Test results show that ILADRC multiple parallel photovoltaic energy storage GFM VSG system has better grid-source interaction stability under a strong power grid and grid harmonic background than parallel virtual impedance/unimproved method.

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Chinese Journal of Electrical Engineering
Pages 371-386

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Cite this article:
Zhu Z, Sun S. Research on ILADRC Multiple Parallel PV Energy Storage GFM VSG System Control Strategy. Chinese Journal of Electrical Engineering, 2026, 12(1): 371-386. https://doi.org/10.23919/CJEE.2025.000166

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Received: 23 March 2024
Revised: 30 June 2024
Accepted: 12 August 2024
Published: 31 March 2026
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