崔杨, 曾鹏, 王铮, 王茂春, 张节潭, 赵钰婷. 考虑碳捕集电厂能量转移特性的弃风消纳多时间尺度调度策略[J]. 中国电机工程学报, 2021, 41(3): 946-960. DOI: 10.13334/j.0258-8013.pcsee.200120
引用本文: 崔杨, 曾鹏, 王铮, 王茂春, 张节潭, 赵钰婷. 考虑碳捕集电厂能量转移特性的弃风消纳多时间尺度调度策略[J]. 中国电机工程学报, 2021, 41(3): 946-960. DOI: 10.13334/j.0258-8013.pcsee.200120
CUI Yang, ZENG Peng, WANG Zheng, WANG Maochun, ZHANG Jietan, ZHAO Yuting. Multiple Time Scales Scheduling Strategy of Wind Power Accommodation Considering Energy Transfer Characteristics of Carbon Capture Power Plant[J]. Proceedings of the CSEE, 2021, 41(3): 946-960. DOI: 10.13334/j.0258-8013.pcsee.200120
Citation: CUI Yang, ZENG Peng, WANG Zheng, WANG Maochun, ZHANG Jietan, ZHAO Yuting. Multiple Time Scales Scheduling Strategy of Wind Power Accommodation Considering Energy Transfer Characteristics of Carbon Capture Power Plant[J]. Proceedings of the CSEE, 2021, 41(3): 946-960. DOI: 10.13334/j.0258-8013.pcsee.200120

考虑碳捕集电厂能量转移特性的弃风消纳多时间尺度调度策略

Multiple Time Scales Scheduling Strategy of Wind Power Accommodation Considering Energy Transfer Characteristics of Carbon Capture Power Plant

  • 摘要: 风电预测精度和火电厂的调节速率对于风电消纳影响较大。考虑到风电预测精度随预测时间尺度的缩短而提高,同时计及碳捕集电厂更深的调节范围和更快的调节速率,提出提高电力系统弃风消纳水平的多时间尺度优化调度策略。首先,将其分为日前、日内、实时调度阶段,分析各个阶段的相互关系,并对碳捕集电厂不同时间尺度下的调度策略进行研究,分析其对于解决弃风消纳问题的合理性。其次,建立日前、日内、实时三时间尺度优化调度模型,并分析实时阶段碳捕集电厂调节量和风电调整量的关系。最后,基于IEEE39节点电网模型并利用CPLEX对该文方法应对弃风消纳以及失负荷情况的有效性进行仿真验证。

     

    Abstract: Wind power prediction accuracy and the regulation rate of thermal power plants have a greater impact on wind power accommodation. Considering that the wind power forecasting accuracy is improved with the shortening of the forecasting time scale, while taking into account the deeper regulation range and faster regulation rate of carbon capture power plants, a multiple time scales optimization scheduling strategy to improve the power system's wind power accommodation level was proposed. Firstly, it was divided into day-ahead, intra-day, and real-time dispatching phases, and the correlation between the various phases was analyzed. The dispatching strategies of carbon capture power plants at different time scales were studied, and their rationality for solving the problem of wind power accommodation was analyzed. Secondly, a three-time scales optimization scheduling model including day-ahead, intra-day and real-time phases was established. And the relationship between the carbon capture power plants adjustment and the wind power adjustment was analyzed in real-time phase. Finally, based on the IEEE 39-node power grid model and CPLEX, the effectiveness of the method in this paper against wind power accommodation and load loss was simulated and verified.

     

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