Title :
H infinity controller design for primary frequency control of energy storage in islanding MicroGrid
Author :
Mongkoltanatas, Jiravan ; Riu, D. ; LePivert, Xavier
Author_Institution :
Grenoble Electr. Eng. Lab. (G2Elab), Grenoble-INP, Grenoble, France
Abstract :
For the frequency stability of microgrids assumed with storage devices, droop frequency control is generally applied for primary frequency control. However, the transient response of frequency is not quite good without any control of its performances (overtaking, time response). Moreover, many storage devices can be installed to guarantee microgrid stability, and a more centralized control may be interesting to coordinate the participation of each device. A Hinfinity controller is then proposed to improve the transient response and the robustness against any small disturbance of the frequency. A model is first proposed in accordance with the global formulation of H infinity control. Then, control specifications are defined in the frequency domain by definition of weighting functions. Finally, simulations of the system with H infinity controller allow verifying that the transient frequency response respects dynamic specifications.
Keywords :
H∞ control; control system synthesis; distributed power generation; energy storage; frequency control; frequency response; frequency stability; frequency-domain analysis; power generation control; power system transient stability; robust control; transient response; H infinity controller design; droop frequency control; energy storage; frequency domain; microgrid frequency stability; primary frequency control; transient frequency response; Energy storage; Frequency control; Generators; H infinity control; Inverters; Switches; Energy storage; Microgrid; Renewable energy systems; Robust control;
Conference_Titel :
Power Electronics and Applications (EPE), 2013 15th European Conference on
Conference_Location :
Lille
DOI :
10.1109/EPE.2013.6634714