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Regular Paper

Novel Discrete-time Frequency-locked Loop for Three-phase Grid-connected Power Converters

Jiaqi Yu1Wenming Guo1Feng Zhou1( )Linjin Xie2Mingmin Zhang1Lihua Cao1
Hunan Province University Key Laboratory of Energy Storage Power System Cyber-Physical Control, Changsha University, Changsha 410022, China
Hunan Disaster Prevention Technology Co., Ltd., Changsha 410129, China
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Abstract

A novel discrete-time frequency-locked loop (FLL) for three-phase grid-connected power converters that features rapid dynamic response and low computational cost is introduced. Firstly, a simplified nonlinear frequency-estimation model that leverages the inherent orthogonality of voltage signals in the αβ-frame, along with an optimal fixed-length delay, is proposed. Subsequently, a discrete-time FLL structure is developed based on this model. In addition, a convergence analysis and parameter design are presented. Finally, a comparative experiment with established methods is conducted, and the results demonstrate that the proposed FLL offers a faster dynamic response, requires fewer parameters to be tuned, ensures a smoother startup process, and maintains a relatively lower computational cost.

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Chinese Journal of Electrical Engineering
Pages 174-183

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Cite this article:
Yu J, Guo W, Zhou F, et al. Novel Discrete-time Frequency-locked Loop for Three-phase Grid-connected Power Converters. Chinese Journal of Electrical Engineering, 2025, 11(1): 174-183. https://doi.org/10.23919/CJEE.2025.000114

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Received: 18 October 2023
Revised: 16 February 2024
Accepted: 10 May 2024
Published: 31 March 2025
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