Multiresonant Frequency-Locked Loop for Grid Synchronization of Power Converters Under Distorted Grid Conditions
Мультирезонансная частотно-фазовая автоподстройка для синхронизации силовых преобразователей с сетью при искажениях напряжения сети
2010-04-14
SCID: 54.1/g5vvj2nu
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grid synchronizationharmonic decouplingmultiple second-order generalized integratorsmultiresonant frequency-locked looppower converters
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Abstract (AI)
This paper presents a new multiresonant frequency-adaptive synchronization method for grid-connected power converters that allows estimating not only the positive- and negative-sequence components of the power signal at the fundamental frequency but also other sequence components at other harmonic frequencies. The proposed system is called MSOGI-FLL since it is based on both a harmonic decoupling network consisting of multiple second-order generalized integrators (MSOGIs) and a frequency-locked loop (FLL), which makes the system frequency adaptive. In this paper, the MSOGI-FLL is analyzed for single- and three-phase applications, deducing some key expressions regarding its stability and tuning. Moreover, the performance of the MSOGI-FLL is evaluated by both simulations and experiments to show its capability for detecting different harmonic components in a highly polluted grid scenario.
Key Findings
1
MSOGI-FLL combines multiple second-order generalized integrators in a harmonic decoupling network with a frequency-locked loop.
2
Simulations and experiments demonstrate detection of multiple harmonic components in a highly polluted grid scenario.
3
The method estimates positive- and negative-sequence components at the fundamental frequency and additional sequence components at harmonic frequencies.
4
The paper introduces MSOGI-FLL, a frequency-adaptive synchronization method for grid-connected converters operating under distorted grid conditions.
5
The system is analyzed for single-phase and three-phase applications, including stability conditions and tuning expressions.
Research Object
MSOGI-FLL frequency-adaptive synchronization system for grid-connected power converters under distorted, highly polluted grid conditions
Research Subject
Estimation and detection of positive-, negative-, and other sequence components at fundamental and harmonic frequencies, including stability and tuning performance in single- and three-phase applications
Publication Details
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2010-04-14
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