风-光-抽蓄零碳电力系统多时间尺度协调调度模型
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TM73

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国家自然科学基金资助项目(U1965104);国家电网有限公司总部科技项目“计及分布式灵活调节资源的电力紧平衡状态实时预警及协同处置策略研究”(SGJS0000DKJS2100973)


A multi-time scale coordinated dispatching model of wind-photovoltaic-pumped storage zero-carbon power system
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The National Natural Science Foundation of China (General Program, Key Program, Major Research Plan)

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    摘要:

    高比例新能源并网带来的波动性影响和新能源消纳水平不足已成为新型电力系统中亟须解决的问题。为此,基于风、光、负荷预测精度随时间尺度缩短而逐级提高的特点和抽蓄机组日内灵活调节特性,建立风-光-抽蓄零碳电力系统多时间尺度协调调度模型。以运行成本最小为目标,建立日前24 h发电计划、日内1 h发电计划和实时15 min发电计划。通过多时间尺度的协调配合,保证风、光、抽蓄出力良好跟踪负荷,逐级修正发电计划。以含6台抽蓄机组的风-光-抽蓄零碳电力系统为例开展仿真分析,结果表明所提多时间尺度协调调度模型有利于减少系统弃风、弃光量,且系统消纳风光的能力与抽蓄电站装机容量有关。

    Abstract:

    The volatility impact and insufficient level of new energy accommodation brought by the high proportion of new energy connected to the grid have become an urgent problem to be solved under the background of new type power system. Therefore, based on the characteristics that the increase of prediction accuracy of wind,photovoltaic power and load improves step by step with reduced time scales and the flexible regulation ability of pumped storage plant,a multi-time scale coordinated dispatching model of wind-photovoltaic-pumped storage zero-carbon power system is established. In order to minimize the cost of power generation,the power generation plans of day-ahead 24-hour,the intraday 1-hour and the real-time 15-minute are established. Through the coordination of multiple time scales,the wind power,photovoltaic power and pumped storage output track the load well,thus revising the power generation plan step by step. Taking the wind-photovoltaic-pumped storage zero-carbon power system with 6 pumped storage units as an example,the simulation analysis shows that the proposed multi-time scale coordinated dispatching model is conductive to reducing curtailment of wind and photovoltaic power,and the ability of power system to accommodate wind and photovoltaic power is related to the installed capacity of pumped storage plant.

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赵心怡,谢俊,周翠玉,邢单玺.风-光-抽蓄零碳电力系统多时间尺度协调调度模型[J].电力工程技术,2023,42(3):121-129

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  • 收稿日期:2022-10-25
  • 最后修改日期:2023-01-08
  • 录用日期:2022-11-15
  • 在线发布日期: 2023-05-19
  • 出版日期: 2023-05-28