返回列表 发布新帖

[电工技术] 考虑无功裕度的电压自适应分区方法及主导节点的选择

8 0
admin 发表于 2025-1-27 08:30 | 查看全部 阅读模式

考虑无功裕度的电压自适应分区方法及主导节点的选择
摘要:针对当前二级电压分区未能较好实现动态无干预调节的现状,基于电压/无功灵敏度及模块度函数,该文提出一种随电网运行工况实时变化的自适应动态分区和主导节点选择方法。以每个无功源为分区中心,根据电压/无功灵敏度大小将负荷节点映射到对应的无功源;构建考虑无功裕度的改进模块度函数,以其为衡量指标进行区域合并自动形成最佳分区。引入其他区域节点对本区主导节点的抗干扰指标,结合主导节点在本区域的可观性和可控性指标,确定主导节点选择方案。从区域内无功源控制灵敏度、无功裕度及主导节点的可观性出发,对分区结果进行评估验证。最后,以IEEE39节点系统为例进行仿真分析,验证了所提方法的有效性和优越性。

Abstract:Aiming at the current situation that the secondary voltage partition fails to achieve dynamic non-interference adjustment, an adaptive dynamic partitioning and pilot node selection method with real-time grid operating conditions was proposed based on the voltage/reactive sensitivity and modularity function. With each reactive power source as the partition center, each load node was mapped to the corresponding reactive power source according to the voltage/reactive sensitivity; an improved modularity function considering reactive power margin was constructed and used as a measure index to merge regions and automatically form the optimal partition. The anti-interference index of other regional nodes to the pilot nodes was introduced, and combined together with the observability and controllability index of the pilot nodes in the region to determine the selection scheme of the pilot nodes. The partition results were evaluated and verified based on reactive power source control sensitivity, reactive power margin and the observability of the pilot node. Finally, the IEEE-39 node system was taken as an example to verify the effectiveness and superiority of the proposed method.

标题:考虑无功裕度的电压自适应分区方法及主导节点的选择
英文标题:Voltage Adaptive Partitioning Method and Optimal Pilot-node Selection Considering Reactive Power Margin

作者:颜湘武, 李若瑾, 徐韵,

关键词:动态分区, 无功裕度, 电压/无功灵敏度, 改进模块度函数, 主导节点,

发表日期:2020-04-01
2025-1-26 20:57 上传
文件大小:
908.17 KB
下载次数:
60
高速下载
【温馨提示】 您好!以下是下载说明,请您仔细阅读:
1、推荐使用360安全浏览器访问本站,选择您所需的PDF文档,点击页面下方“本地下载”按钮。
2、耐心等待两秒钟,系统将自动开始下载,本站文件均为高速下载。
3、下载完成后,请查看您浏览器的下载文件夹,找到对应的PDF文件。
4、使用PDF阅读器打开文档,开始阅读学习。
5、使用过程中遇到问题,请联系QQ客服。

本站提供的所有PDF文档、软件、资料等均为网友上传或网络收集,仅供学习和研究使用,不得用于任何商业用途。
本站尊重知识产权,若本站内容侵犯了您的权益,请及时通知我们,我们将尽快予以删除。
  • 手机访问
    微信扫一扫
  • 联系QQ客服
    QQ扫一扫
2022-2025 新资汇 - 参考资料免费下载网站 最近更新浙ICP备2024084428号
关灯 返回顶部
快速回复 返回顶部 返回列表