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考虑节点功率储备与中心性的主动配电网动态集群电压控制

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为应对大规模分布式光伏(photovoltaic,PV)接入引起的主动配电网电压越限问题,降低控制策略的时序复杂性,提出一种考虑节点功率储备与节点影响力(global importance of each node,GIN)的主动配电网动态集群电压控制方法.首先,通过考虑系统各节点的功率储备度,定义聚类算法的电压灵敏度-功率储备度(voltage sensitivity-power reserve,VS-PR)综合电气距离量度.进而,以GIN算法改进亲和力传播(affinity propagation,AP)聚类算法,实现网络集群划分与主导节点选取.然后,建立主动配电网集群电压控制模型,并通过动态粒子群算法(dynamic particle swarm optimization,D-PSO)进行模型求解.最后,通过建立基于MATLAB 2021b平台的IEEE 33 节点仿真算例对比分析,验证了所提动态集群划分与电压控制方法的正确性和有效性.
Power Reserve and GIN Centrality of Buses Considered Dynamic Cluster Voltage Control of Active Distribution Networks
To deal with the voltage over-limit problem of active distribution network caused by large-scale distributed photovoltaic(PV)access and reduce the time complexity of the control strategy,a dynamic cluster voltage control method considering power reserve and global importance of each node(GIN)in active distribution network was proposed.First,by considering the power reserve of each bus in the system,the voltage sensitivity-power reserve(VS-PR)comprehensive、electrical distance measure of the clustering algorithm is defined.Furthermore,the GIN algorithm is used to improve the affinity propagation(AP)clustering algorithm to realize network cluster division and dominant bus selection.Then,the active distribution network cluster voltage control model is established,and the model is solved by dynamic particle swarm optimization(D-PSO).Finally,the correctness and effectiveness of the proposed dynamic cluster division and voltage control method are verified by establishing a comparative analysis of IEEE 33-bus simulation examples based on the MATLAB 2021b platform.

active distribution networkvoltage controlsource-network clusterdistributed PVcomprehensive electrical distanceaffinity propagation algorithminfluence of nodes

杨悦、陈宇航、成龙、孙玮澳、顾欣然、郜佳兴、单继忠

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现代电力系统仿真控制与绿色电能新技术教育部重点实验室(东北电力大学),吉林省 吉林市 132012

国网吉林省电力有限公司长春供电公司,吉林省 长春市 130012

国网辽宁省电力有限公司锦州供电公司,辽宁省 锦州市 121000

国网吉林省电力有限公司长春供电公司九台区供电中心,吉林省 长春市 130041

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主动配电网 电压控制 源-网集群 分布式光伏 综合电气距离 亲和力传播算法 节点影响力

国家电网有限公司总部科技项目

5108-202299258A-1-0-ZB

2024

电网技术
国家电网公司

电网技术

CSTPCD北大核心
影响因子:2.821
ISSN:1000-3673
年,卷(期):2024.48(2)
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