DocumentCode :
1819532
Title :
Comparison of synchronization techniques to the grid applied to single-phase inverters
Author :
Carranza Castillo, Oscar ; Ortega Gonzalez, Ruben ; Rodriguez Rivas, Jaime Jose
Author_Institution :
Escuela Super. de Computo, Inst. Politec. Nac., Mexico City, Mexico
fYear :
2013
fDate :
8-11 July 2013
Firstpage :
1
Lastpage :
6
Abstract :
This paper presents the comparison of synchronization techniques to the grid applied to single-phase inverters. The synchronizer is used in a single-phase inverter, which is applied in an environment of microgrids. The inverter converts the energy that comes from renewable energy sources (photovoltaic, wind, fuel cell, etc.). The main objective of obtaining the phase of the grid is to achieve a power factor close to unity in the inverter. For this reason it is vital that the phase difference between the synchronizer and the grid zero. To obtain synchronizer algorithm using Linear Kalman Filter is necessary to know the Extended Kalman Filter. This allows to analyze the operation of the filter, which allows to reach reduce Linear Kalman Filter or also known as Simplified Kalman Filter. Due to the system is single phase is required orthogonal signal because the Linear Kalman Filter works with a stationary reference frame. Orthogonal signal is created with an all-pass filter. To compare the results is implemented a synchronizer using PLL, because it is the most used.
Keywords :
Kalman filters; all-pass filters; distributed power generation; invertors; power factor; power filters; power grids; synchronisation; all-pass filter; extended Kalman filter; fuel cell energy; grid phase; grid zero; linear Kalman filter; microgrid environment; orthogonal signal; phase difference; photovoltaic energy; power factor; renewable energy sources; simplified Kalman filter; single-phase inverters; stationary reference frame; synchronization technique; synchronizer algorithm; wind energy; Frequency synchronization; Inverters; Kalman filters; Phase locked loops; Synchronization; Time-frequency analysis; Vectors; Kalman Lineal Filter; PLL; Single-phase Inverter microgrid;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power Electronics for Distributed Generation Systems (PEDG), 2013 4th IEEE International Symposium on
Conference_Location :
Rogers, AR
Type :
conf
DOI :
10.1109/PEDG.2013.6785590
Filename :
6785590
Link To Document :
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