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D-estimation method for grid synchronization of single-phase power converters: analysis, linear modeling, tuning, and comparison with SOGI-PLL
by
Sepahvand, Hamed
, Emdadi, Manijeh
in
Accuracy
/ Economics and Management
/ Electrical Engineering
/ Electrical Machines and Networks
/ Energy Policy
/ Engineering
/ Equivalence
/ Modelling
/ Original Paper
/ Phase locked loops
/ Power converters
/ Power Electronics
/ Synchronism
/ Tuning
2024
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D-estimation method for grid synchronization of single-phase power converters: analysis, linear modeling, tuning, and comparison with SOGI-PLL
by
Sepahvand, Hamed
, Emdadi, Manijeh
in
Accuracy
/ Economics and Management
/ Electrical Engineering
/ Electrical Machines and Networks
/ Energy Policy
/ Engineering
/ Equivalence
/ Modelling
/ Original Paper
/ Phase locked loops
/ Power converters
/ Power Electronics
/ Synchronism
/ Tuning
2024
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Do you wish to request the book?
D-estimation method for grid synchronization of single-phase power converters: analysis, linear modeling, tuning, and comparison with SOGI-PLL
by
Sepahvand, Hamed
, Emdadi, Manijeh
in
Accuracy
/ Economics and Management
/ Electrical Engineering
/ Electrical Machines and Networks
/ Energy Policy
/ Engineering
/ Equivalence
/ Modelling
/ Original Paper
/ Phase locked loops
/ Power converters
/ Power Electronics
/ Synchronism
/ Tuning
2024
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D-estimation method for grid synchronization of single-phase power converters: analysis, linear modeling, tuning, and comparison with SOGI-PLL
Journal Article
D-estimation method for grid synchronization of single-phase power converters: analysis, linear modeling, tuning, and comparison with SOGI-PLL
2024
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Overview
D-estimation method (DEM) is a single-phase synchronization system, which includes a prefilter, a postfilter, an estimate producer, and a frequency feedback (FFB) loop for adapting the prefilter and postfilter to frequency changes. The DEM has a completely different structure compared to phase-locked loops (PLLs), which makes its analysis, tuning, and linear modeling rather challenging, at least for those who are not very experienced in this area. This study aims to bridge this research gap. It is demonstrated in this study that the DEM, in its simplest possible form, is mathematically equivalent to the second-order generalized integrator-based PLL (SOGI-PLL) if a certain condition holds. This equivalence, which is verified numerically and experimentally, makes the linear modeling, analysis, and tuning of the DEM quite straightforward.
Publisher
Springer Berlin Heidelberg,Springer Nature B.V
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