A Novel Three-Phase Phase-Locked Loop Method Based on Fractional-Order Filter
He Yu1,2, Qi Hanhong2, Luo Qi3, Deng Chao1, Chen Hongtao4
1. School of Intelligent Engineering Jiangsu Vocational College of Information TechnologyWuxi 214153 China;
2. School of Electrical Engineering Yanshan University Qinhuangdao 066004 China;
3. School of Information & Control Nanjing University of Information Science & TechnologyNanjing 210044 China;
4. State Grid Jilin Electric Power Company Songyuan Subsidiary Songyuan 138000 China
Using complex coefficient filter (CCF) to study grid synchronization is a popular method at present. In order to further improve the dynamic performance of phase-locked loop (PLL), a new PLL algorithm that changes the CCF-PLL to fractional-order filter (FOF) is put forward by using the characteristic of fractional-order control that can improve the dynamic quality of the system. The designed pre-stage multiple FOF structure can generate the resonance peaks in the positive-/ negative-sequence component (FPC/FNC) and harmonics of the grid fundamental wave. Through the closed-loop control, FPC/FNC and harmonics are precisely separated, so that the pure frequency and phase are extracted by the post-stage synchronous rotating frame PLL. To analyze the dynamic performance of the proposed PLL, its linearized mathematical model is derived, thereby the corresponding system and related parameters are designed. The study shows that with the same open-loop cut-off frequency, the proposed PLL has better dynamic performance than the CCF-PLL. Finally, the proposed PLL is tested by Matlab/Simulink simulation and related experiments, which shows good dynamic behavior.
何宇, 漆汉宏, 罗琦, 邓超, 陈洪涛. 基于分数阶滤波器的三相锁相环技术[J]. 电工技术学报, 2019, 34(12): 2572-2583.
He Yu, Qi Hanhong, Luo Qi, Deng Chao, Chen Hongtao. A Novel Three-Phase Phase-Locked Loop Method Based on Fractional-Order Filter. Transactions of China Electrotechnical Society, 2019, 34(12): 2572-2583.
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