张大海, 孙锴, 史一茹, 李立新, 李亚平, 贠韫韵. 考虑灵活资源及模数驱动方法的电力系统调度方法综述[J]. 高电压技术, 2024, 50(1): 42-54. DOI: 10.13336/j.1003-6520.hve.20230766
引用本文: 张大海, 孙锴, 史一茹, 李立新, 李亚平, 贠韫韵. 考虑灵活资源及模数驱动方法的电力系统调度方法综述[J]. 高电压技术, 2024, 50(1): 42-54. DOI: 10.13336/j.1003-6520.hve.20230766
ZHANG Dahai, SUN Kai, SHI Yiru, LI Lixin, LI Yaping, YUN Yunyun. Overview of Power System Dispatching Methods Considering Flexible Resources and Model-data Driven[J]. High Voltage Engineering, 2024, 50(1): 42-54. DOI: 10.13336/j.1003-6520.hve.20230766
Citation: ZHANG Dahai, SUN Kai, SHI Yiru, LI Lixin, LI Yaping, YUN Yunyun. Overview of Power System Dispatching Methods Considering Flexible Resources and Model-data Driven[J]. High Voltage Engineering, 2024, 50(1): 42-54. DOI: 10.13336/j.1003-6520.hve.20230766

考虑灵活资源及模数驱动方法的电力系统调度方法综述

Overview of Power System Dispatching Methods Considering Flexible Resources and Model-data Driven

  • 摘要: 可再生能源及负荷种类的增多给电力系统运行带来更大不确定性,也给电力系统经济调度带来挑战。深入分析总结灵活资源特性并对不确定性的准确建模是评估电力系统灵活性和实现经济调度的基础。基于模型或数据驱动的调度建模方法面临诸多挑战,将模型与数据驱动方式相结合,并充分发挥二者优势是电力系统优化调度的发展方向。该文从灵活资源分类及特性、系统灵活性评估方法及优化调度的模型与数据驱动建模3个方面进行了归纳整理。首先,从电网侧、供应侧及需求侧3个方面介绍了系统中的灵活资源,并总结了其调节特性。其次,介绍了权重分配、数理统计及包络区间3种常用电力系统灵活性评价指标,并总结了不同方法的适用性。然后,总结了模型驱动或数据驱动的应用现状及其各自优缺点,并对模型数据交互驱动的研究现状进行了概述。最后,对考虑灵活资源的电力系统调度方案研究进行了展望。

     

    Abstract: The increase in renewable energy and load types brings greater uncertainty to the operation of the power system, as well as challenges to the economic dispatch of the power system. Deeply analyzing and summarizing the characteristics of flexible resources and accurately modeling uncertainty are the basis for evaluating the flexibility of power systems and achieving economic dispatch. Model or data-driven based scheduling modeling methods face many challenges, and combining model and data-driven approaches and fully leveraging their advantages is the development direction of power system optimization scheduling. We summarize and organize from following three aspects: flexible resource classification and characteristics, system flexibility evaluation methods, and optimization scheduling models and data-driven modeling. Firstly, the flexible resources in the system were introduced from three aspects: grid side, supply side, and demand side, and their regulation characteristics were summarized. Secondly, three commonly used power system flexibility evaluation indicators, namely, weight allocation, mathematical statistics and envelope interval, were introduced, and the applicability of different methods was summarized. Then, current research status of flexible resource allocation driven by model driven, data driven, and model-data interac-tion driven was summarized. Finally, the prospects in research of power system flexibility are put forward.

     

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