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含分布式光伏的配电网双层协调电压优化方法
作者姓名:袁昌昊  朱金大  倪建富
作者单位:国网江苏省电力有限公司超高压分公司,南瑞集团国网电力科学研究院有限公司,南瑞集团国网电力科学研究院有限公司
基金项目:国家重点研发计划资助项目(2021YFB2601604)水运港-船多能源融合技术及集成应用;国家电网有限公司科技项目“面向整县屋顶光伏接入的供用电系统源荷协同运行与智能运维关键技术研究与示范”;南瑞集团科技项目“含高比例新能源的配电网功能结构、系统架构与评价指标及方法研究”
摘    要:当分布式光伏进入极高比例渗透阶段,配电网电压越限的问题会更加突出。常用方法是调用配网内多种可调资源来改善电压分布,但较少地考虑实际工程中馈线层与变电站之间的信息交互。为此,本文提出一种考虑馈线层与变电站双层协调的配电网电压优化方法。在馈线层建立以线路损耗最小为目标的最优潮流模型,经二阶锥松弛求得馈线层首端电压和注入功率并反馈给上层变电站;在变电站建立以低压侧母线电压调整量最小为目标的调压模型,将调整后的首端电压返回馈线层,更新潮流分布并获得可调资源的调度计划。最后依据扩展的IEEE33节点配电系统算例,利用Cplex求解,验证该方法在解决配网电压越限问题的基础上,可以更好地控制电压偏差、减少设备切换次数、提高系统运行的经济性。

关 键 词:双层协调  信息交互  无功优化  极高比例渗透  电压越限  二阶锥规划
收稿时间:2022/7/17 0:00:00
修稿时间:2022/11/7 0:00:00

Coordinated voltage optimization method in distribution network with distributed photovoltaic
Authors:YUAN Changhao  ZHU Jind  NI Jianfu
Affiliation:NARI Group State Grid Electric Power Research Institute Co.,Ltd.,NARI Group State Grid Electric Power Research Institute Co.,Ltd.
Abstract:When the distributed photovoltaics enters the stage of extremely high proportion penetration, the problem of over-limit voltage in the distribution network becomes more prominent. A variety of adjustable resources in the distribution network are used in the common method to improve voltage distribution, but there is little consideration given to the information interaction between feeder layer and substation in practical engineering. Therefore, a voltage optimization method for distribution network considering the coordination between feeder layer and substation double layer is proposed in this paper. An optimal power flow model with the goal of minimizing the line loss is established in the feeder layer. The voltage at the head of the feeder layer and the injected power of the feeder layer are obtained by second-order cone relaxation, and fed back to the upper substation. A regulating voltage model is established in the substation with the goal of minimizing the voltage adjustment amount of PCC, and the adjusted voltage is returned to the feeder layer to update the power flow distribution. Then, the scheduling plan of adjustable resources are obtained. Finally, the extended IEEE 33-node power distribution system is taken as an example. The Cplex optimization solver is used to verify that the method can control the voltage and reduce the number of switching equipment. The economy of system operation on the basis of solving the distribution network voltage over-limit problem is improved.
Keywords:double layer coordination  information interaction  reactive power optimization  extremely high proportion of penetration  over-limit voltage  second-order cone programming
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