Title :
Optimal dispatching method for smoothing power fluctuations of the wind-photovoltaic-battery hybrid generation system
Author :
Li, Lili ; Ding, Qia ; Li, Hucheng ; Dan, Maohua
Author_Institution :
NARI Tech Dev. Co. Ltd., Nanjing, China
Abstract :
The combination operation of wind-photovoltaic-battery hybrid power system brings a new challenge to the traditional generation dispatching. Based on the operating status of energy storage, the forecast of wind power and photovoltaic power output, this paper focuses on the optimization of the day-ahead generation scheduling of the wind-photovoltaic-battery hybrid power system. An active power dispatching model is built to maximize the profit of hybrid power system where kinds of operating constraints are considered. To realize the smoothness of generated power, the punishment of multi-point coupling fluctuations of generating curve is added to the optimization objective. The model proposed is solved by a linear programming optimization algorithm. Simulation results indicate that the output characteristic of hybrid power system is similar to the conventional power system. Thus, it greatly improved the integration capacity of intermittent energy.
Keywords :
battery storage plants; hybrid power systems; linear programming; photovoltaic power systems; power generation dispatch; power generation scheduling; wind power plants; active power dispatching model; day-ahead generation scheduling; energy storage; generation dispatching; hybrid power system; intermittent energy integration capacity; linear programming optimization algorithm; multipoint coupling fluctuations; optimal dispatching method; optimization objective; photovoltaic power output; smoothing power fluctuations; wind power forecast; wind-photovoltaic-battery hybrid generation system; wind-photovoltaic-battery hybrid power system; Batteries; Dispatching; Fluctuations; Photovoltaic systems; Wind power generation; Wind power; energy storage; linear programming; optimization dispatching; photovoltaic generation; power generation smoothness;
Conference_Titel :
Innovative Smart Grid Technologies - Asia (ISGT Asia), 2012 IEEE
Conference_Location :
Tianjin
Print_ISBN :
978-1-4673-1221-9
DOI :
10.1109/ISGT-Asia.2012.6303310