DocumentCode
1410375
Title
CERTS Microgrid Laboratory Test Bed
Author
Lasseter, R.H. ; Eto, J.H. ; Schenkman, B. ; Stevens, J. ; Vollkommer, H. ; Klapp, D. ; Linton, E. ; Hurtado, H. ; Roy, J.
Author_Institution
Univ. of Wisconsin, Madison, WI, USA
Volume
26
Issue
1
fYear
2011
Firstpage
325
Lastpage
332
Abstract
The CERTS Microgrid concept captures the emerging potential of distributed generation using a system approach. CERTS views generation and associated loads as a subsystem or a “microgrid.” The sources can operate in parallel to the grid or can operate in island, providing uninterruptible power-supply services. The system can disconnect from the utility during large events (i.e., faults, voltage collapses), but may also intentionally disconnect when the quality of power from the grid falls below certain standards. CERTS Microgrid concepts were demonstrated at a full-scale test bed built near Columbus, OH, and operated by American Electric Power. The testing fully confirmed earlier research that had been conducted initially through analytical simulations, then through laboratory emulations, and finally through factory acceptance testing of individual microgrid components. The islanding and resynchronization method met all Institute of Electrical and Electronics Engineers Standard 1547 and power-quality requirements. The electrical protection system was able to distinguish between normal and faulted operation. The controls were found to be robust under all conditions, including difficult motor starts and high impedance faults.
Keywords
distributed power generation; laboratories; power distribution protection; power grids; power supply quality; CERTS microgrid laboratory test bed; distributed generation; electrical protection system; factory acceptance testing; islanding method; laboratory emulations; microgrid components; power quality; power-supply services; resynchronization method; Frequency control; Inverters; Reactive power; Steady-state; Switches; Voltage control; CERTS; CHP; distributed generation; intentional islanding; inverters; microgrid; power versus frequency droop; uninterruptible power supply (UPS); voltage droop;
fLanguage
English
Journal_Title
Power Delivery, IEEE Transactions on
Publisher
ieee
ISSN
0885-8977
Type
jour
DOI
10.1109/TPWRD.2010.2051819
Filename
5673682
Link To Document