赵莎莎, 朱雅魁, 王悦. 基于大数据分析的综合能源系统负荷特性聚类分析[J]. 电测与仪表, 2023, 60(2): 10-15,52. DOI: 10.19753/j.issn1001-1390.2023.02.002
引用本文: 赵莎莎, 朱雅魁, 王悦. 基于大数据分析的综合能源系统负荷特性聚类分析[J]. 电测与仪表, 2023, 60(2): 10-15,52. DOI: 10.19753/j.issn1001-1390.2023.02.002
ZHAO Sha-sha, ZHU Ya-kui, WANG Yue. Cluster analysis of integrated energy system load characteristics based on big data analysis[J]. Electrical Measurement & Instrumentation, 2023, 60(2): 10-15,52. DOI: 10.19753/j.issn1001-1390.2023.02.002
Citation: ZHAO Sha-sha, ZHU Ya-kui, WANG Yue. Cluster analysis of integrated energy system load characteristics based on big data analysis[J]. Electrical Measurement & Instrumentation, 2023, 60(2): 10-15,52. DOI: 10.19753/j.issn1001-1390.2023.02.002

基于大数据分析的综合能源系统负荷特性聚类分析

Cluster analysis of integrated energy system load characteristics based on big data analysis

  • 摘要: 随着我国综合能源系统的迅速发展,用户侧出现越来越多的综合负荷尤其是电冷热耦合负荷,而针对冷热电负荷的耦合特性的研究极为重要,其决定了综合能源系统规划和运行是否科学合理。因此,将大数据分析法应用到冷热电综合负荷的耦合特性分析中,建立了基于改进K-means算法的冷热电负荷耦合特性分析模型,该模型利用国外某高校实测综合能源系统相关真实数据,对学校用能负荷按照春夏秋冬四季进行合理聚类分析,以获得不同季节时段以及同一季节时段的用能负荷耦合特性,在此基础上,对该综合能源系统中电、冷综合需求响应的潜力进行研究。最后,通过仿真分析,结果表明文中方法能较好地深入挖掘该综合能源系统的用能耦合特性和需求响应潜力,为制定合理的综合需求响应方案提供有力数据支撑。

     

    Abstract: With the rapid development of integrated energy system in China, more and more comprehensive loads, especially the coupled loads of electricity, cold and heat, appear on the user side. The research on the coupling characteristics of cold, heat and electricity loads are extremely important, which determines whether the planning and operation of the integrated energy system are scientific and reasonable. Therefore, the big data analysis method is applied to the cold-heat-electricity coupling characteristics of comprehensive load analysis, and the cold-heat-electricity coupling characteristic analysis model is established based on improved K-means algorithm. This model uses a real data related to the integrated energy system measured by a foreign university. In order to obtain the coupling characteristics of the same season time or different seasons, a reasonable clustering analysis for energy load in school shall be carried out in accordance with the four seasons of spring, summer, autumn and winter. On this basis, this paper studies the potential of the integrated demand response of electricity and cold in the integrated energy system. Finally, by simulation analysis, the results show that the proposed method can well explore the coupling characteristics of energy use and demand response potential of the integrated energy system, which provides strong data support for the formulation of a reasonable integrated demand response scheme.

     

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