中国电力2024,Vol.57Issue(10) :90-101.DOI:10.11930/j.issn.1004-9649.202402026

计及联络开关投切的有源配网电流速断保护定值优化方案

An Optimized Scheme for Active Distribution Network Current Speed Protection Setting Considering Tie Switch Operation

程诺 陈大才 陈雪 阮筱菲 韦舒清 韩哲宇
中国电力2024,Vol.57Issue(10) :90-101.DOI:10.11930/j.issn.1004-9649.202402026

计及联络开关投切的有源配网电流速断保护定值优化方案

An Optimized Scheme for Active Distribution Network Current Speed Protection Setting Considering Tie Switch Operation

程诺 1陈大才 1陈雪 1阮筱菲 1韦舒清 2韩哲宇2
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作者信息

  • 1. 国网福建省电力有限公司经济技术研究院,福建福州 350013
  • 2. 华北电力大学电力工程系,河北保定 071003
  • 折叠

摘要

含联络开关的有源配电网网架结构复杂、运行方式变换频繁,给依赖于静态网络拓扑和固定运行方式的传统电流保护正确动作带来很大影响.对此,提出了一种电流速断保护定值优化方案,由配电终端实时监测开关量信息,上传主站获取拓扑关联矩阵,并结合光伏电源输出特性,自适应调整保护定值.该方案可以在考虑逆变型电源出力波动性的前提下,有效增强保护应对不同网络拓扑变化的能力,通信压力小.仿真结果表明:所提方案能有效增加I段保护范围,受分布式发电(distributed generator,DG)出力影响小,可以适应配网拓扑结构变化.

Abstract

Active distribution grid with tie switches has a complex grid structure and undergo frequent changes in operation mode,which greatly affects the correct operation of traditional current protection that relies on static grid topology and fixed operation mode.A setting optimization scheme for instantaneous overcurrent protection is proposed,which monitors the switch status information in real-time by the terminal unit,uploads the topology correlation matrix to the master station,and combines the output characteristics of the inverter-type distributed power supply to adaptively adjust the protection settings.The scheme can effectively enhance the adaptability of the protection to the grid topology and the output fluctuation of the inverter-type power supply with low communication pressure.Simulation results show that it can effectively increase the instantaneous overcurrent protection range,reduce the impact of DG output and better adapt to grid topology changes.

关键词

配电网/分布式电流保护/自适应电流保护/控制策略/网络重构

Key words

distribution grid/distributed current protection/self-adaptive current protection/control strategy/grid topology reconstruction

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基金项目

国家电网有限公司科技项目(SGFJJY00SJJS2310052)

出版年

2024
中国电力
国网能源研究院 中国电机工程学会

中国电力

CSTPCDCSCD北大核心
影响因子:1.463
ISSN:1004-9649
参考文献量25
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