Title :
Control and Power Management of Converter Fed Microgrids
Author :
Sao, Charles K. ; Lehn, Peter W.
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of Toronto, Toronto, ON
Abstract :
This paper presents a voltage-power droop/frequency-reactive power boost (VPD/FQB) control scheme that allows multiple voltage source converters (VSCs) to operate in parallel in a VSC fed microgrid. Each current controlled VSC in such a microgrid has its own VPD/FQB controller that sets its current references to regulate the voltage and frequency of a common microgrid bus. By drooping the voltage reference of each controller against its real power output, multiple VPD/FQB controllers jointly regulate the microgrid voltage while sharing a common load power in proportion to a predetermined ratio. Similarly, by boosting the frequency reference of each controller against its reactive power output, multiple VPD/FQB controllers jointly regulate the microgrid frequency while sharing the reactive load in proportion to a predetermined ratio. The proposed control scheme can also operate in grid connected mode. Experimental results are provided to validate the VPD/FQB control scheme.
Keywords :
distributed power generation; energy management systems; frequency control; power convertors; power distribution control; reactive power control; voltage control; converter fed microgrids; frequency-reactive power boost control; multiple voltage source converters; power management; reactive load; voltage-power droop control; $dq$-frame current control; frequency boost; instantaneous synchronization; load sharing; microgrid control; voltage droop; voltage source converter;
Journal_Title :
Power Systems, IEEE Transactions on
DOI :
10.1109/TPWRS.2008.922232