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Optimal power peak shaving using hydropower to complement wind and solar power uncertainty

机译:使用水力发电优化功率调峰以补充风能和太阳能的不确定性

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摘要

Booming renewable energy development, such as wind and solar power, with their intermittency and uncertainty characteristics, pose challenges for power grid dispatching, especially for power grid peak shaving. In this paper, coordinated operation of hydropower and renewable energy in a provincial power grid is explored to alleviate fluctuation and aid peak shaving. Considering their aggregate effect, this study aggregates wind power plants and solar power plants into a virtual wind power plant and a virtual solar power plant, respectively, and the forecasted error distribution of wind and solar power is analyzed with kernel density estimation. Then, based on the principles of using hydropower to compensate for fluctuating wind and solar power, a day ahead peak shaving model with the objective of minimizing residual load peak-valley difference is built, which introduces chance constraints for forecast errors and coordinate hydropower operation with wind and solar power. To simplify the solution, the proposed model is recast as a successive linear programming problem. Day-ahead scheduling case studies of a provincial power grid system indicate that the proposed model can conduct peak shaving effectively, hydropower can compensate wind and solar power fluctuation, improve the stability of combined output, and make better use of renewable energy. Therefore, this study provides an alternative approach for peak shaving operation of power system with hydropower and increasing integration of wind and solar power in China and other places worldwide.
机译:风能和太阳能等蓬勃发展的可再生能源具有间歇性和不确定性特征,这对电网调度,尤其是电网调峰提出了挑战。本文探讨了省级电网中水电和可再生能源的协调运行,以缓解波动并帮助削峰。考虑到它们的聚集效应,本研究将风力发电厂和太阳能发电厂分别聚集为一个虚拟的风力发电厂和一个虚拟的太阳能发电厂,并利用核密度估计分析了风力和太阳能发电的预测误差分布。然后,基于利用水电来补偿风能和太阳能波动的原理,建立了旨在将剩余负荷峰谷差异最小化的提前一天削峰模型,该模型引入了预测误差的机会约束并协调水电运行。风能和太阳能。为了简化解决方案,将提出的模型重铸为连续的线性规划问题。某省级电网系统的日前调度案例研究表明,该模型可以有效地进行调峰,水电可以补偿风能和太阳能的波动,提高综合产出的稳定性,并更好地利用可再生能源。因此,本研究为中国和世界其他地方的水力发电系统的调峰运行以及增加风能和太阳能的集成提供了另一种方法。

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