Variable-Structure Generalized Delayed Signal Cancellation PLL to Improve Convergence Time

This paper shows a scheme for improving the detection performance of the fundamental-frequency positive-sequence (FFPS) space vector through the generalized delayed signal cancellation phase-locked loop (GDSC-PLL). We implemented a variable-structure scheme in order to reduce the convergence time by...

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Published in:IEEE transactions on industrial electronics (1982) Vol. 62; no. 11; pp. 7146 - 7150
Main Authors: Batista, Ygo N., de Souza, Helber E. P., Neves, Francisco A. S., Dias Filho, Roberto F., Bradaschia, Fabricio
Format: Journal Article
Language:English
Published: New York IEEE 01-11-2015
The Institute of Electrical and Electronics Engineers, Inc. (IEEE)
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Abstract This paper shows a scheme for improving the detection performance of the fundamental-frequency positive-sequence (FFPS) space vector through the generalized delayed signal cancellation phase-locked loop (GDSC-PLL). We implemented a variable-structure scheme in order to reduce the convergence time by changing the traditional datapath whenever even harmonics are not present in the input signal. If this condition is not true, the performances of the variable-structure GDSC-PLL and the traditional GDSC-PLL for detecting the FFPS space vector will be similar. Therefore, the variable-structure GDSC-PLL does not require a previous knowledge about the harmonic components of the three-phase signal. Furthermore, we improved the frequency-adaptive scheme. The performances of the original and proposed schemes were compared through transient test cases based on IEC 61000 and typical electrical events. The new approach led to a reduction of up to 62% in the convergence time.
AbstractList This paper shows a scheme for improving the detection performance of the fundamental-frequency positive-sequence (FFPS) space vector through the generalized delayed signal cancellation phase-locked loop (GDSC-PLL). We implemented a variable-structure scheme in order to reduce the convergence time by changing the traditional datapath whenever even harmonics are not present in the input signal. If this condition is not true, the performances of the variable-structure GDSC-PLL and the traditional GDSC-PLL for detecting the FFPS space vector will be similar. Therefore, the variable-structure GDSC-PLL does not require a previous knowledge about the harmonic components of the three-phase signal. Furthermore, we improved the frequency-adaptive scheme. The performances of the original and proposed schemes were compared through transient test cases based on IEC 61000 and typical electrical events. The new approach led to a reduction of up to 62% in the convergence time.
Author Neves, Francisco A. S.
Bradaschia, Fabricio
de Souza, Helber E. P.
Dias Filho, Roberto F.
Batista, Ygo N.
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  givenname: Helber E. P.
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Cites_doi 10.1109/TIE.2011.2163284
10.1109/TIE.2012.2206350
10.1109/TIE.2013.2262762
10.1109/TIE.2014.2334665
10.1109/TPWRD.2010.2044196
10.1049/cp:20010773
10.1109/MIA.2007.4283506
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Keywords phase-locked loops (PLLs)
power filters
synchronization method
Amplitude and phase estimation
industrial power system harmonics
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  article-title: A review on synchronization methods for grid-connected three-phase VSC under unbalanced and distorted conditions
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Snippet This paper shows a scheme for improving the detection performance of the fundamental-frequency positive-sequence (FFPS) space vector through the generalized...
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StartPage 7146
SubjectTerms amplitude and phase estimation
Cancellation
Convergence
Electrical engineering
Frequency estimation
Harmonic analysis
Harmonics
Industrial electronics
industrial power system harmonics
Mathematical analysis
Phase locked loops
Phase locked systems
power filters
Power system harmonics
Switches
Synchronization method
Time factors
Vectors (mathematics)
Title Variable-Structure Generalized Delayed Signal Cancellation PLL to Improve Convergence Time
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