DocumentCode
1127063
Title
Robust Control Scheme for a Microgrid With PFC Capacitor Connected
Author
Li, Yun Wei ; Vilathgamuwa, D. Mahinda ; Loh, Poh Chiang
Author_Institution
Univ. of Alberta, Edmonton
Volume
43
Issue
5
fYear
2007
Firstpage
1172
Lastpage
1182
Abstract
Capacitors are widely used for power-factor correction (PFC) in power systems. When a PFC capacitor is installed with a certain load in a microgrid, it may be in parallel with the filter capacitor of the inverter interfacing the utility grid and the local distributed-generation unit and, thus, change the effective filter capacitance. Another complication is the possibility of occurrence of resonance in the microgrid. This paper conducts an in-depth investigation of the effective shunt-filter-capacitance variation and resonance phenomena in a microgrid due to a connection of a PFC capacitor. To compensate the capacitance-parameter variation, an Hinfin controller is designed for the voltage-source- inverter voltage control. By properly choosing the weighting functions, the synthesized Hinfin controller would exhibit high gains at the vicinity of the line frequency, similar to traditional high- performance P+ resonant controller and, thus, would possess nearly zero steady-state error. However, with the robust Hinfin controller, it will be possible to explicitly specify the degree of robustness in face of parameter variations. Furthermore, a thorough investigation is carried out to study the performance of inner current-loop feedback variables under resonance conditions. It reveals that filter-inductor current feedback is more effective in damping the resonance. This resonance can be further attenuated by employing the dual-inverter microgrid conditioner and controlling the series inverter as a virtual resistor affecting only harmonic components without interference with the fundamental power flow. And finally, the study in this paper has been tested experimentally using an experimental microgrid prototype.
Keywords
Hinfin control; power capacitors; power distribution control; power factor correction; power grids; resonant invertors; robust control; voltage control; Hinfin controller; PFC capacitor; damping; distributed-generation unit; filter capacitor; filter-inductor current feedback; microgrid; power-factor correction; robust control scheme; voltage-source-inverter voltage control; Capacitance; Capacitors; Feedback; Inverters; Performance gain; Power harmonic filters; Power systems; Resonance; Robust control; Voltage control; Distributed generation (DG); H$infty$ control; microgrids; power-factor-correction (PFC) capacitor; resonance attenuation;
fLanguage
English
Journal_Title
Industry Applications, IEEE Transactions on
Publisher
ieee
ISSN
0093-9994
Type
jour
DOI
10.1109/TIA.2007.904388
Filename
4305324
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