Title :
Double fundamental frequency PLL with second order generalized integrator under unbalanced grid voltages
Author :
Zhaoyang Yan ; Hongyan He ; Jianxia Li ; Ming Su ; Chunjiang Zhang
Author_Institution :
Dept. of Electr. Eng. & Autom., Yanshan Univ., Qinhuangdao, China
Abstract :
Under unbalanced grid voltage conditions, negative-sequence will generate the double fundamental frequency in the dq synchronous rotating reference frame. In order to detect the positive-sequence component of the grid voltages fast, this paper proposes a new phase-locked loop method, called double fundamental frequency phase-locked loop (DFF-PLL). The operation principle is analyzed, giving the extract formulas of the positive- and negative-sequence with double fundamental frequency, the process of DFF-PLL and the detection of positive-sequence component of grid voltages. The paper improves the second order generalized integrator quadrature-signals generation (SOGI-QSG), in order to remove the DC bias voltage and guarantee the orthogonality of SOGI-QSG. The performance of DFF-PLL is verified by using simulation and experimental results. Compared with DSOGI-PLL, this method increases the detection speed and accuracy under unbalanced grid voltage conditions.
Keywords :
phase locked loops; power apparatus; power grids; DFF-PLL method; DQ synchronous rotating reference frame; DSOGI-PLL method; SOGI-QSG orthogonality; detection speed; double-fundamental frequency PLL method; negative-sequence; phase-locked loop method; positive-sequence component detection; second-order generalized integrator quadrature-signal generation; unbalanced grid voltage conditions; Band-pass filters; Frequency synchronization; Oscillators; Phase frequency detector; Phase locked loops; Transfer functions; Vectors; detection positive sequence and negative sequence; double fundamental frequency phase-locked loop(DFF-PLL); second order generalized integrator (SOGI); unbalanced gird voltages;
Conference_Titel :
Electronics and Application Conference and Exposition (PEAC), 2014 International
Conference_Location :
Shanghai
DOI :
10.1109/PEAC.2014.7037838