DocumentCode :
1265143
Title :
Probabilistic Analysis for Maximizing the Grid Integration of Wind Power Generation
Author :
De Magalhães Carvalho, Leonel ; Rosa, Mauro Augusto da ; Silva, Armando Martins Leite da ; Miranda, Vladimiro
Author_Institution :
Inst. for Syst. & Comput. Eng. of Porto Technol. & Sci, INESC TEC (formerly INESC Porto), Porto, Portugal
Volume :
27
Issue :
4
fYear :
2012
Firstpage :
2323
Lastpage :
2331
Abstract :
This paper presents a sequential Monte Carlo simulation algorithm that can simultaneously assess composite system adequacy and detect wind power curtailment events. A simple procedure at the end of the state evaluation stage is proposed to categorize wind power curtailment events according to their cause. Furthermore, the dual variables of the DC optimal power flow procedure are used to identify which transmission circuits are restricting the use of the total wind power available. In the first set of experiments, the composite system adequacy is assessed, incorporating different generation technologies. This is conducted to clarify the usual comparisons made between wind and thermal technologies which, in fact, depend on the performance measure selected. A second set of experiments considering several wind penetration scenarios is also performed to determine the operational rules or system components responsible for the largest amount of wind energy curtailed. The experiments are carried out on configurations of the IEEE-RTS 79 power system.
Keywords :
Monte Carlo methods; load flow; power grids; probability; wind power plants; DC optimal power flow procedure; IEEE-RTS 79 power system; composite system adequacy; grid integration; probabilistic analysis; sequential Monte Carlo simulation algorithm; thermal technology; transmission circuits; wind power curtailment event detection; wind power generation; wind technology; Interconnected systems; Load modeling; Monte Carlo methods; Power system stability; Propagation losses; Wind farms; Wind power generation; Chronological Monte Carlo simulation; composite system; intermittent energy sources; reliability assessment;
fLanguage :
English
Journal_Title :
Power Systems, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8950
Type :
jour
DOI :
10.1109/TPWRS.2012.2207411
Filename :
6269097
Link To Document :
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