Title :
Optimal power management in a microgrid with multiple electronically interfaced DG units
Author :
Raghami, A. ; Hamzeh, M. ; Ameli, M.
Author_Institution :
Dept. of Electr. & Comput. Eng., Shahid Beheshti Univ., Tehran, Iran
Abstract :
A novel control strategy is presented in this paper to attain appropriate real power sharing among converter-based distributed generators (DGs) in a microgrid. The presented strategy employs automatic adaptation to two droop-based techniques namely unit power control (UPC) and feeder flow control (FFC). A combination of these techniques is used for the microgrid. Smart droop tuning is reflected in the control strategy by employing a new metaheuristic algorithm called Cuckoo Search (CS) to coordinate the power sharing of the DG units. In comparison to the ancestral metaheuristic algorithms, the CS algorithm benefits from stronger random processes with fewer set parameters. A kind of optimization is scheduled for power sharing. In addition to preservation of the ratio of DGs rated powers, overshoot and settling time of active powers are reflected in the cost function of optimization. The veracity of the proposed control strategy is investigated by digital time domain simulation studies.
Keywords :
distributed power generation; energy management systems; load flow control; power control; power distribution control; search problems; CS algorithm; DG; FFC; UPC; converter-based distributed generators; cuckoo search; digital time domain simulation; droop-based techniques; feeder flow control; metaheuristic algorithm; microgrid; multiple electronically interfaced DG units; optimal power management; power sharing; smart droop tuning; unit power control; Cuckoo Search Algorithm; Microgrid; electronically interfaced distributed generator; feeder flow control; real power control; smart droop strategy;
Conference_Titel :
Power Electronics, Drive Systems and Technologies Conference (PEDSTC), 2014 5th
Conference_Location :
Tehran
DOI :
10.1109/PEDSTC.2014.6799350