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Multi-Loop Design of Virtual Synchronous Machine Control for DFIG-Based Wind Farms

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IIT-25-314WP (693.3Kb)
Autor
García Aguilar, Javier
García Cerrada, Aurelio
Zamora Macho, Juan Luis
Bueno Peña, Emilio José
Saiz Marín, Elena
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info:eu-repo/semantics/draft
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The displacement of synchronous generators by converter–interfaced renewable energy sources obliges wind farms to provide inertia, damping, and voltage support, above all in increasingly weak grid conditions. This paper presents a coordinated frequency-domain methodology for tuning all control layers of doubly-fed induction generators (DFIGs) within a wind farm operated as a Virtual Synchronous Machine (VSM).Starting from a full small-signal linearisation that preserves loop-to-loop and machine-to-machine couplings, the procedure reshapes every local open loop to explicit phase-margin targets through a single, prioritised iteration. The resulting controllers provide a step response and stability margins close to those programmed at the design stage, in spite of the cross coupling between control loops. Since controller synthesis relies exclusively on classical loop-shaping tools available in commercial simulation suites, it is readily applicable to industrial-scale projects.
 
URI
http://hdl.handle.net/11531/106291
Multi-Loop Design of Virtual Synchronous Machine Control for DFIG-Based Wind Farms
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DFIG, frequency-domain analysis, grid-forming control, multi-loop control, small-signal stability, virtual synchronous machine, weak grids
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Repositorio de la Universidad Pontificia Comillas copyright © 2015  Desarrollado con DSpace Software
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Repositorio de la Universidad Pontificia Comillas copyright © 2015  Desarrollado con DSpace Software
Contacto | Sugerencias