DocumentCode :
3158333
Title :
A research of digital signal phase difference algorithm for power system
Author :
Kongyang, Chen ; Jian, Cao ; Jiafeng, Ding
Author_Institution :
Sch. of Phys. Sci. & Technol., Central South Univ., Changsha, China
fYear :
2011
fDate :
16-18 April 2011
Firstpage :
1930
Lastpage :
1933
Abstract :
The traditional DFT algorithm has a great spectrum leakage and picket fence effect with asynchronous sampling, which may lead to significant error about the phase and the frequency. In order to measure the accuracy phase difference of two sine signal, this paper provides an improved algorithm based on DFT. Firstly, the Hanning self-convolution window, which has a lower peak side-lobe level and a higher side-lobe rolloff rate, is studied in this paper to reduce the spectrum leakage. Then we introduce discrete spectrum correction technology to acquire a precise phase and frequency. Finally, frequency prediction approach based on discrete PID is proposed to update the sample frequency to gain upon the synchronous sampling, when the signal frequency changed. Simulation experiment shows that the improved DFT algorithm can reach a higher precision than DFT windowed by Hanning or Hamming, when signal frequency is changed linear or nonlinear.
Keywords :
convolution; discrete Fourier transforms; power system measurement; three-term control; Hanning self-convolution window; digital signal phase difference algorithm; discrete PID; frequency prediction approach; picket fence effect; power system; side-lobe level; side-lobe rolloff rate; signal frequency; spectrum leakage; synchronous sampling; Accuracy; Algorithm design and analysis; Dielectric loss measurement; Discrete Fourier transforms; Power systems; Signal processing algorithms; Discrete spectrum correct; Frequency prediction; Hanning self-convolution window; Phase difference;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Consumer Electronics, Communications and Networks (CECNet), 2011 International Conference on
Conference_Location :
XianNing
Print_ISBN :
978-1-61284-458-9
Type :
conf
DOI :
10.1109/CECNET.2011.5768741
Filename :
5768741
Link To Document :
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