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规模化光伏并网后配电网电压控制策略决策
引用本文:张雯程,徐艺铭,李征洲,王志强,牛强,李介夫.规模化光伏并网后配电网电压控制策略决策[J].电测与仪表,2018,55(15):80-85.
作者姓名:张雯程  徐艺铭  李征洲  王志强  牛强  李介夫
作者单位:中国农业大学;华北电力大学电气与电子工程学院;国网吉林省电力有限公司吉林供电公司
摘    要:随着配电网中接入大规模分布式光伏电源,光伏的电压控制策略得到了学者们的日益关注。文中提出了三种电压控制策略,他们分别是集中式、分散式和多时间尺度的电压控制。集中电压控制调节的特点是集中调节并网电容器组、有载调压变压器分接开关和分布式光伏,这么做的好处是优化整个网络的电压控制。分散式的电压控制的特点是根据局部可用信息,通过监测点电压独立控制来改善电网的运行。基于多时间尺度的电压控制的特点,是由两部分组成的,分别是短时间尺度的配电网的实时控制和长时间尺度的配电网的优化。通过吉林电网白城市的算例,比较三种电压控制策略的优缺点,并确定三种方案的应用场景,为配网规划人员的决策提供有效依据。

关 键 词:光伏并网  电压控制策略  应用场景  辅助决策
收稿时间:2017/11/23 0:00:00
修稿时间:2017/11/28 0:00:00

Decision-making of voltage control strategy for distribution network after large-scale PV participation
Zhang Wencheng,Xu Yiming,Li Zhengzhou,Wang Zhiqiang,Niu Qiang and Li Jiefu.Decision-making of voltage control strategy for distribution network after large-scale PV participation[J].Electrical Measurement & Instrumentation,2018,55(15):80-85.
Authors:Zhang Wencheng  Xu Yiming  Li Zhengzhou  Wang Zhiqiang  Niu Qiang and Li Jiefu
Affiliation:China Agricultural University,North China Electric Power University,North China Electric Power University,North China Electric Power University,Jilin Provincial Power Company State Grid Corporation,Jilin Provincial Power Company State Grid Corporation
Abstract:With the widespread use of distributed PV connected into distribution network, three kinds of voltage control strategies are proposed, namely, centralized, decentralized and multi-time scales voltage control. Centralized voltage control adjusts distributed PV, parallel capacitor group and on-load tap changer to optimize voltage control overall the entire network. Decentralized voltage control using local available information, by monitoring point voltage independent control to improve the operation of the grid. Multi-time scale voltage control is composed of long-time scale and short-time scale control in real time. By case study, this paper obtain the advantages and disadvantages of the three voltage control strategies and their application environments, auxiliary planning staff in distribution network make the best decision.
Keywords:PV  participation network  Voltage  control strategy  Application  environments  Auxiliary  device
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