DocumentCode :
1448387
Title :
Control Methods of Inverter-Interfaced Distributed Generators in a Microgrid System
Author :
Chung, Il-Yop ; Liu, Wenxin ; Cartes, David A. ; Collins, Emmanuel G., Jr. ; Moon, Seung-Il
Author_Institution :
Florida State Univ., Tallahassee, FL, USA
Volume :
46
Issue :
3
fYear :
2010
Firstpage :
1078
Lastpage :
1088
Abstract :
Microgrids are a new concept for future energy distribution systems that enable renewable energy integration and improved energy management capability. Microgrids consist of multiple distributed generators (DGs) that are usually integrated via power electronic inverters. In order to enhance power quality and power distribution reliability, microgrids need to operate in both grid-connected and island modes. Consequently, microgrids can suffer performance degradation as the operating conditions vary due to abrupt mode changes and variations in bus voltages and system frequency. This paper presents controller design and optimization methods to stably coordinate multiple inverter-interfaced DGs and to robustly control individual interface inverters against voltage and frequency disturbances. Droop-control concepts are used as system-level multiple DG coordination controllers, and control theory is applied to device-level inverter controllers. Optimal control parameters are obtained by particle-swarm-optimization algorithms, and the control performance is verified via simulation studies.
Keywords :
control system analysis; distributed power generation; invertors; optimal control; particle swarm optimisation; power distribution control; power generation control; power supply quality; robust control; L1 control theory; controller design; droop-control concepts; energy distribution systems; frequency disturbances; inverter-interfaced distributed generators; microgrid system; optimal control; optimization methods; particle- swarm-optimization algorithms; power distribution reliability; power electronic inverters; power quality; renewable energy integration; robust control; ${rm L}_{1}$ theory; Control-parameter tuning; distributed generator (DG); droop controller; microgrid; optimal control; particle swarm optimization (PSO);
fLanguage :
English
Journal_Title :
Industry Applications, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-9994
Type :
jour
DOI :
10.1109/TIA.2010.2044970
Filename :
5437183
Link To Document :
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