基于图数据库和图计算的源网荷储协同日内调度计算方法
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TM711

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云南电力调度控制中心科技项目(YNKJXM20222463)


Intra-day scheduling computing of coordinated generation-grid- load-storage based on graph database and graph computing
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    摘要:

    新型电力系统需要"源网荷储一体化"协同优化调度.目前,调度自动化系统采用关系型数据库,基于多个关联表进行数据查询和存储,难以满足计算的快速性需求.本文提出一种基于图的源网荷储协同日内调度计算方法.首先,利用图数据库实现源网荷储时空数据的融合;其次,综合考虑火电机组、可调节负荷和储能等多种资源,构建源网荷储协同日内调度优化模型;然后,提出基于图计算的潮流计算方法,快速进行系统安全校核;最后,基于安全校核结果修正系统运行状态,直至满足所有的运行约束条件.通过对改进的IEEE118和IEEE1354节点系统算例进行分析,结果表明,本文提出的源网荷储协同优化方法能够提升计算效率.

    Abstract:

    The new power system requires cooperative and optimized scheduling in the integration of Generation-Grid-Load-Storage (GGLS).At present,the scheduling automation system employs a relational database that relies on multiple associated tables for data query and storage,making it difficult to meet the rapid computation demands.Here,we propose a graph-based computing method for intra-day scheduling of coordinated GGLS.Firstly,the graph database is used to integrate the spatiotemporal data from power generation,grid,loads,and storage.Secondly,a comprehensive optimization model of intra-day scheduling of coordinated GGLS is formulated,taking into account various resources such as thermal power units,adjustable loads,and energy storage.Thirdly,a graph-based power flow calculation approach is proposed to quickly perform system security checks.Finally,based on the security check results,the system operating status is corrected until all operational constraints are satisfied.Through analysis of improved examples on the IEEE118-node and IEEE1354-node systems,it is verified that the proposed coordinated optimization strategy for GGLS can improve computational efficiency.

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王珍意,高道春,莫熙,戈本星,路学刚,郄靖彪,谢桦,张沛.基于图数据库和图计算的源网荷储协同日内调度计算方法[J].南京信息工程大学学报(自然科学版),2024,16(6):838-845
WANG Zhenyi, GAO Daochun, MO Xi, GE Benxing, LU Xuegang, QIE Jingbiao, XIE Hua, ZHANG Pei. Intra-day scheduling computing of coordinated generation-grid- load-storage based on graph database and graph computing[J]. Journal of Nanjing University of Information Science & Technology, 2024,16(6):838-845

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历史
  • 收稿日期:2024-03-11
  • 在线发布日期: 2025-01-06

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