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Mr. Zhengwen Yang
School of Electrical Engineering, Beijing Jiaotong University

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Research Keywords & Expertise

0 Wind Turbines
0 Renewable energy power generation technology
0 virtual synchronous generator control
0 Full size converter
0 Water pump turbine

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Short Biography

ZHENGWEN YANG received the bachelor's degree in electrical engineering from Beijing Jiaotong University, Beijing, China, in 2018. He is currently working toward the master's degree in electrical engineering with Beijing Jiaotong University. His research interests is renewable energy grid-connected power generation based on virtual synchronous generator control.

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Journal article
Published: 12 April 2021 in Sustainability
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The virtual synchronous generator (VSG), which emulates the essential behavior of the conventional synchronous generator, has attracted great attention. This paper proposes to analyze the harmonic resonance characteristics in VSG using the state-space model. The analysis is based on a full-order state-space small-signal model that fully considers the dynamic of the inner loops and the VSG-based outer power control loop. Participation analysis is used to point out the contributions of different states to the eigenvalues. Moreover, eigenvalue locus and singular value decomposition (SVD) are applied together to evaluate the impact of the inner loop parameters on the harmonic resonance characteristics around the LCL filter resonance frequency. The analysis indicates that the harmonic resonance instability is mainly caused by decreasing the proportional gains of the current loop and the voltage loop. Finally, extensive numerical simulation and experimental results are given to verify the validity of the theoretical analysis. Both the simulation and experimental results indicate that the voltage of the common coupling point is unstable after decreasing the proportional gains of the current and voltage controllers. As K pc decreases from 5 to 0.4 or K pv decreases from 0.6 to 0.2, the harmonic distortion factor (HDF) around the LCL filter resonance frequency increases. Furthermore, the consistency of simulation results, experimental results, and the theoretical analysis results is validated.

ACS Style

Jingya Jiang; Wei Wang; Xuezhi Wu; Fen Tang; Zhengwen Yang; Xiangjun Li. Analysis of Harmonic Resonance Characteristics in Grid-Connected LCL Virtual Synchronous Generator. Sustainability 2021, 13, 4261 .

AMA Style

Jingya Jiang, Wei Wang, Xuezhi Wu, Fen Tang, Zhengwen Yang, Xiangjun Li. Analysis of Harmonic Resonance Characteristics in Grid-Connected LCL Virtual Synchronous Generator. Sustainability. 2021; 13 (8):4261.

Chicago/Turabian Style

Jingya Jiang; Wei Wang; Xuezhi Wu; Fen Tang; Zhengwen Yang; Xiangjun Li. 2021. "Analysis of Harmonic Resonance Characteristics in Grid-Connected LCL Virtual Synchronous Generator." Sustainability 13, no. 8: 4261.