Title :
Modeling and validation of a flywheel energy storage lab-setup
Author :
Diaz-Gonzalez, Francisco ; Sumper, A. ; Gomis-Bellmunt, Oriol ; Villafafila-Robles, Roberto
Author_Institution :
Catalonia Inst. for Energy Res. (IREC), Sant Adri`a del Besόs, Spain
Abstract :
This work deals with the modeling, control and experimental validation of a flywheel test bench which is part of IREC´s lab-scale microgrid. The storage device has been designed as a proof of concept. It is based on a low-speed rotating disk mechanically coupled to a Permanent Magnet Synchronous Machine. The electrical power is exchanged with the external grid by means of a set of back-to-back power converters. These power electronics control the speed of the machine, and thus the active power absorbed or injected by the device, and also regulate the reactive power at the point of common coupling with the external grid. Vector control techniques are used for designing the converter controllers: a field oriented vector control algorithm is implemented for governing the servomotor while the instantaneous power theory-based algorithm is used to manage the active and reactive currents flowing from the grid side converter. The control implementation in the experimental setup has been carried out by means of programming Digital Signal Processors (DSP´s). The modeling and control system design has been validated after executing several experiments.
Keywords :
angular velocity control; digital control; distributed power generation; flywheels; machine vector control; permanent magnet motors; power convertors; power grids; reactive power control; servomotors; synchronous motors; DSP; IREC lab-scale microgrid; active power; back-to-back power converters; converter controllers; digital signal processors; electrical power; external grid; field oriented vector control algorithm; flywheel energy storage lab-setup modelling; flywheel test bench control; grid side converter; instantaneous power theory-based algorithm; low-speed rotating disk; permanent magnet synchronous machine; point of common coupling; power electronics control; reactive currents; reactive power regulation; servomotor; speed control; storage device; system design control; vector control techniques; Algorithm design and analysis; Energy storage; Microgrids; Power electronics; Servomotors; Wind turbines; DSP; Flywheel Energy Storage System; Permanent Magnet Synchronous Machine; experimental validation;
Conference_Titel :
Innovative Smart Grid Technologies (ISGT Europe), 2012 3rd IEEE PES International Conference and Exhibition on
Conference_Location :
Berlin
Print_ISBN :
978-1-4673-2595-0
Electronic_ISBN :
2165-4816
DOI :
10.1109/ISGTEurope.2012.6465640