Title :
Reliability evaluation of stand-alone hybrid microgrid using Sequential Monte Carlo Simulation
Author :
Ghahderijani, Mohammad Moradi ; Barakati, S. Masoud ; Tavakoli, Saeed
Author_Institution :
ECE Dept., Univ. of Sistan & Baluchestan, Zahedan, Iran
Abstract :
Adequacy assessment of a stand-alone microgrid including diesel generator (DG), Micro Gas Turbine(MGT), Wind Turbine Generator(WTG), and Photovoltaic(PV) with different configurations is carried out using Sequential Monte Carlo Simulation(SMCS) method. To obtain the output power of WTG and PV, some atmospheric data such as wind speed, solar irradiation, and ambient temperature data are needed. Weibull distribution is used to obtain these data. To obtain the adequacy model of DG and MGT a two-state reliability model is employed. A combination of the two-state reliability model and output power can be also used to build the generation model of WTG and PV. In addition, the generation model of system compares with IEEE Reliability Test System (IEEE RTS) load model and adequacy indices are then achieved. Simulation results corroborate the flexibility of SMSC in risk evaluation of both stable and unstable resources.
Keywords :
Monte Carlo methods; Weibull distribution; diesel-electric generators; distributed power generation; gas turbine power stations; load (electric); photovoltaic power systems; power generation reliability; wind turbines; DG; IEEE reliability test system load model; MGT; PV generation model; SMSC flexibility; WTG; Weibull distribution; ambient temperature data; atmospheric data; diesel generator; microgas turbine; output power generation model; photovoltaic generation system; risk evaluation; sequential Monte Carlo simulation; solar irradiation; stand-alone hybrid microgrid reliability evaluation; two-state reliability model; wind speed; wind turbine generator; Load modeling; Mathematical model; Power generation; Power system reliability; Reliability; Wind speed; micro gas turbine; microgrid; monte carlo simulation; photovoltaic; wind turbine generator;
Conference_Titel :
Renewable Energy and Distributed Generation (ICREDG), 2012 Second Iranian Conference on
Conference_Location :
Tehran
Print_ISBN :
978-1-4673-0663-8
Electronic_ISBN :
978-1-4673-0664-5
DOI :
10.1109/ICREDG.2012.6190464