DocumentCode
665992
Title
Hierarchical power management for DC microgrid in islanding mode and Solid State transformer enabled mode
Author
Xunwei Yu ; Xu She ; Huang, A.
Author_Institution
Electr. Eng. Dept., North Carolina State Univ., Raleigh, NC, USA
fYear
2013
fDate
10-13 Nov. 2013
Firstpage
1656
Lastpage
1661
Abstract
A hierarchical power management scheme is proposed in this paper for a typical DC Microgrid. Different from other Microgrids, the DC Microgrid can interface to the distribution system by Solid-State transformer (SST). The hierarchical power management strategy includes three control levels: 1) primary control for DC Microgrid to implement distributed operation 2) secondary control for the DC Microgrid bus voltage recovery to achieve seamless mode switch 3) tertiary control to manage the battery charge and discharge. The DC Microgrid can operate in islanding mode, including the individual control for distributed renewable energy source (DRER) and distributed energy storage device (DESD). In addition, the DC microgrid can operate in SST-enabled mode to interface to the distribution system. The DC Micorgrid can seamlessly switch between islanding mode and SST-enable mode. The consideration of state of charge (SOC) for battery is also involved into the tertiary control. To this end, a lab test-bed is constructed to verify the system performance. Lastly, several typical case studies are carried out and the experimental results verify the proposed power management strategy.
Keywords
battery management systems; distributed power generation; energy storage; hierarchical systems; power distribution control; power system management; power transformers; DC microgrid; DESD; DRER; SOC; SST-enable mode; battery charge management; battery discharge management; bus voltage recovery; distributed energy storage device; distributed operation; distributed renewable energy source; distribution system; hierarchical power management scheme; islanding mode; primary control; seamless mode switch; secondary control; solid-state transformer; state of charge; tertiary control; Batteries; Equations; Microgrids; Switches; System-on-chip; Voltage control; DC Microgrid; SST-enabled mode; Solid-State transformer; hierarchical power management; islanding mode;
fLanguage
English
Publisher
ieee
Conference_Titel
Industrial Electronics Society, IECON 2013 - 39th Annual Conference of the IEEE
Conference_Location
Vienna
ISSN
1553-572X
Type
conf
DOI
10.1109/IECON.2013.6699381
Filename
6699381
Link To Document