DocumentCode :
267310
Title :
Notch filter constraints analysis and SPLL design under unbalanced voltage conditions
Author :
Chai Xiu-Hui ; Zhang Chun-Jiang ; Ben Bing ; Wang Xiao-huan
Author_Institution :
Dept. of Electr. Eng. & Autom., Yanshan Univ., Qinhuangdao, China
fYear :
2014
fDate :
5-8 Nov. 2014
Firstpage :
664
Lastpage :
669
Abstract :
When the network voltage is unbalanced, reactive component under synchronous rotating coordinate system will contain twice frequency AC component, which influences phase-locked precision. In order to accurately lock phase, notch filter is added to the Soft Phase-locked Loop(SPLL). This paper focuses on the research of the PLL system containing notch filter. Based on the consideration of stability and rapidity, not only the regulator paramenter design but also the contraints of notch filter quatity factor(Q-factor) is analyzed. The two different approximate treatments, low frequency band reduced-order approximate treatment(LFBROAT) and high frequency band reduced-order approximate treatment(HFBROAT), is adopted to analyze the notch filter, it is obtained that HFBROAT can guarantee the stability of the system finally. Through the modeling of SPLL containing notch filter, not only the regulator paramenter design mothod but also the contraints of notch filter Q-factor is obtained, thereby it is ensured that the system has good dynamic and static performance.Through modeling of SPLL contained notch filter, the regulator parameter design method and the constraints of notch filter Q-factor are obtained, and thereby ensure that the system has good dynamic and static performance. The results of simulation and experimental verify the feasibility and correctness of the theoretical analysis and design.
Keywords :
Q-factor; notch filters; phase locked loops; power system stability; HFBROAT; SPLL design; SPLL modeling; frequency AC component; lock phase; low-frequency band reduced-order approximate treatment; notch filter Q-factor; notch filter constraint analysis; notch filter quatity factor; phase-locked precision; reactive component; regulator paramenter design; soft phase-locked loop; synchronous rotating coordinate system; unbalanced voltage condition; Notch Filter; Q-factor; SPLL; approximate treatment;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electronics and Application Conference and Exposition (PEAC), 2014 International
Conference_Location :
Shanghai
Type :
conf
DOI :
10.1109/PEAC.2014.7037936
Filename :
7037936
Link To Document :
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