Adaptive Vectorial Filter for Grid Synchronization of Power Converters Under Unbalanced and/or Distorted Grid Conditions

Industrial Electronics, IEEE Transactions  (2013)

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摘要
This paper presents a new synchronization scheme for detecting multiple positive-/negative-sequence frequency harmonics in three-phase systems for grid-connected power converters. The proposed technique is called MAVF-FLL because it is based on the use of multiple adaptive vectorial filters (AVFs) working together inside a harmonic decoupling network, resting on a frequency-locked loop (FLL) which makes the system frequency adaptive. The method uses the vectorial properties of the three-phase input signal in the αβ reference frame in order to obtain the different harmonic components. The MAVF-FLL is fully designed and analyzed, addressing the tuning procedure in order to obtain the desired and predefined performance. The proposed algorithm is evaluated by both simulation and experimental results, demonstrating its ability to perform as required for detecting different harmonic components under a highly unbalanced and distorted input grid voltage.
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关键词
adaptive filters,distributed power generation,frequency locked loops,power convertors,smart power grids,synchronisation,MAVF-FLL,distorted grid conditions,distorted input grid voltage,distributed power generation networks,frequency-locked loop,grid synchronization,grid-connected power converters,harmonic components,harmonic decoupling network,multiple adaptive vectorial filters,multiple positive-negative sequence frequency harmonics,smart grids,system frequency adaptive,three-phase input signal,three-phase systems,tuning procedure,unbalanced input grid voltage,vectorial properties,Adaptive filters (AFs),frequency-locked loops (FLLs),harmonic analysis,monitoring,power converters,renewable energy,smartgrid,synchronization
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