Phase locked loop (PLL) algorithms are very important for grid synchronization in most of the grid-connected power converters applications. Particularly new grid codes for wind parks pose serious challenges to PLL. The performance of the PLL should not be affected under distorted grid conditions such as: transients, short interruptions, sags, swells, voltage unbalance, harmonics, flickers, frequency and phase variations. This paper presents a performance comparison of different phase locked loop techniques: Synchronous Reference Frame-Phase Locked Loop (SRF-PLL), Enhanced Phase-Locked-Loop (EPLL) and Quadrature-Phase Locked Loop (QPLL).

Synchronization Techniques for Grid Connected Wind Turbine / Nagliero A; Mastromauro R; Liserre M; Dell’Aquila A. - ELETTRONICO. - (2009), pp. 4606-4613. (Intervento presentato al convegno The 35th Annual Conference of the IEEE Industrial Electronics Society – IECON 2009 tenutosi a Porto, PORTUGAL nel November 3-5 2009) [10.1109/IECON.2009.5414859].

Synchronization Techniques for Grid Connected Wind Turbine

MASTROMAURO, ROSA ANNA;
2009

Abstract

Phase locked loop (PLL) algorithms are very important for grid synchronization in most of the grid-connected power converters applications. Particularly new grid codes for wind parks pose serious challenges to PLL. The performance of the PLL should not be affected under distorted grid conditions such as: transients, short interruptions, sags, swells, voltage unbalance, harmonics, flickers, frequency and phase variations. This paper presents a performance comparison of different phase locked loop techniques: Synchronous Reference Frame-Phase Locked Loop (SRF-PLL), Enhanced Phase-Locked-Loop (EPLL) and Quadrature-Phase Locked Loop (QPLL).
2009
Proceedings of IEEE IECON 2009
The 35th Annual Conference of the IEEE Industrial Electronics Society – IECON 2009
Porto, PORTUGAL
November 3-5 2009
Nagliero A; Mastromauro R; Liserre M; Dell’Aquila A
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Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/1016374
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