Short-term Optimization of Multi-source System with High Proportion of Wind Power and Photovoltaic

Hong Hu, Libin Wen, Kun Zheng
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引用次数: 1

Abstract

A short-term optimization model of multi-source power system including wind power units, photovoltaic units, nuclear power units, thermal units, and hydropower pumps is proposed. For power systems under high proportion of wind power and photovoltaic connection, the goal of model is to consume a large amount of new energies and improve the system economy., while the load tracking performance of the new generation of nuclear power units can be used under the condition of ensuring safety to alleviate the pressure of peak load regulation with high proportion of wind power and photovoltaic connection. Characterize the randomness, intermittentness and volatility of wind power and photovoltaic power units ; refine the peak load regulation of thermal power units into ordinary and deep mode, and refine their economic indicators. Calculations show that the model is feasible in calculating short-term optimization of multi-source power systems. It can improve wind power and photovoltaic absorption capacity and system economy. It has good application value for ensuring the consumption of clean energies and improve the economic of the power system.
风电光伏高比例多源系统的短期优化
提出了包括风电机组、光伏机组、核电机组、火电机组和水泵在内的多源电力系统的短期优化模型。对于风电与光伏并网比例较高的电力系统,模型的目标是大量消耗新能源,提高系统经济性。,而新一代核电机组的负荷跟踪性能可以在保证安全的情况下使用,缓解风电和光伏并网比例高的调峰压力。表征风电和光伏发电机组的随机性、间歇性和波动性;将火电机组调峰细化为普通模式和深度模式,并细化其经济指标。计算表明,该模型对多源电力系统的短期优化计算是可行的。可提高风电和光伏的吸收能力和系统经济性。对保证清洁能源的使用,提高电力系统的经济性具有良好的应用价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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