Optimal short-term operation and sizing of pumped-storage power plants in systems with high penetration of wind energy

J. Pérez-Díaz, A. Perea, J. R. Wilhelmi
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引用次数: 28

Abstract

In this paper the short-term optimal operation of an electric system comprising several thermal power plants and one pumped storage plant is studied in several scenarios of power demand and wind penetration in order to draw conclusions about the contribution of the pumped storage plant to system operation costs. A mixed integer linear programming model is used to obtain the optimal hourly thermal, hydro and pumping powers so that the production cost of the entire system is minimized. An aggregated piecewise linear hourly production cost curve is used to represent the thermal generation; the marginal production cost varying as a function of the power generated according to the slope of each piecewise linear segment. Main design parameters of the pumped storage plant are not considered fixed in the model but rather they are obtained in the solution with the purpose of drawing conclusions about the plant optimal sizing.
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高风能渗透系统中抽水蓄能电站的短期运行优化与规模优化
本文研究了一个由多个火电厂和一个抽水蓄能电厂组成的电力系统在不同电力需求和风侵情况下的短期最优运行,从而得出抽水蓄能电厂对系统运行成本的贡献。采用混合整数线性规划模型求解每小时最优的热力、水力和抽水功率,使整个系统的生产成本最小。采用分段线性每小时生产成本曲线表示发电量;边际生产成本作为发电量的函数根据每分段线性段的斜率而变化。模型中不认为抽水蓄能电站的主要设计参数是固定的,而是在解中求得的,目的是得出电站最优规模的结论。
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