Principle of wind-solar complementary discharge control
Through reasonable design, the wind-solar complementary system can significantly improve the stability and reliability of power generation, reduce the capacity demand of the
In the short-term power balance module of the integrated model, the power complementary process among hydro-wind-solar-storage systems is solved through nonlinear programming (Fig. 1).
The low points of wind and solar resource output coincide with the peak abundant periods of water resources. This annual pattern of wind, solar, and water resources provides a favorable opportunity for complementary power generation. Fig. 3.
Water level operation characteristics of cascade reservoirs in a multi-energy complementary system The operation mode of cascade reservoirs in multi-energy complementary system differs from that in traditional power generation dispatching, although it shares some commonalities.
Clearly, as wind and solar resources gradually decline each year, natural streamflow resources become increasingly abundant. The low points of wind and solar resource output coincide with the peak abundant periods of water resources.
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