DocumentCode :
239478
Title :
Efficient design selection in microgrid simulations
Author :
Bastani, Mohammad ; Thanos, Aristotelis E. ; Celik, Nurcin ; Chun-Hung Chen
Author_Institution :
Dept. of Ind. Eng., Univ. of Miami, Coral Gables, FL, USA
fYear :
2014
fDate :
7-10 Dec. 2014
Firstpage :
2762
Lastpage :
2773
Abstract :
Microgrids (MGs) offer new technologies for semiautonomous grouping of alternative energy loads fed into a power grid in a coordinated manner. Simulations of these microgrids are time critical yet computationally demanding, inherently complex, and dynamic, especially when they are constructed for control purposes. In this paper, we address the design ranking and selection problem in MG simulations from a set of finite alternatives in the presence of stochastic constraints. Each design encapsulates a different level of control of the segregation mechanism within the system, and a performance function measured as a combination of the incurred cost and energy surety. Building on this performance function, optimal computing budget allocation (OCBA) method is used to efficiently allocate simulation replications for selecting the best design with significant accuracy and reasonable computational burden. Computational results on a multi-scale MG testbed have shown that OCBA algorithm outperforms equal and proportional to variance allocation of replications.
Keywords :
distributed power generation; MG simulations; OCBA algorithm; design ranking; efficient design selection; microgrid simulations; multiscale MG testbed; optimal computing budget allocation; performance function; segregation mechanism; selection problem; stochastic constraints; Algorithm design and analysis; Computational modeling; Load modeling; Mathematical model; Microgrids; Resource management;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Simulation Conference (WSC), 2014 Winter
Conference_Location :
Savanah, GA
Print_ISBN :
978-1-4799-7484-9
Type :
conf
DOI :
10.1109/WSC.2014.7020119
Filename :
7020119
Link To Document :
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