电网与清洁能源2024,Vol.40Issue(10) :142-148.

光伏接入中低压配网下的无功补偿优化配置

The Optimal Configuration of Reactive Power Compensation under PV Access to Medium and Low Voltage Distribution Networks

刘涛 韩海英 邬世杰 朱生荣
电网与清洁能源2024,Vol.40Issue(10) :142-148.

光伏接入中低压配网下的无功补偿优化配置

The Optimal Configuration of Reactive Power Compensation under PV Access to Medium and Low Voltage Distribution Networks

刘涛 1韩海英 1邬世杰 1朱生荣1
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作者信息

  • 1. 内蒙古电力(集团)有限责任公司乌兰察布供电分公司,内蒙古乌兰察布 012000
  • 折叠

摘要

为提升光伏发电机组接入中低压配网后的电能输送质量、降低网损率,基于混合整数凸规划,完成配电网的无功补偿配置研究.该方法以含光伏发电的中低压配网最小网损为目标,构建配电网无功补偿数学模型.实验结果表明:该方法应用后中低压配网节点电压标幺数值得到有效提升,且随着配电网运行时间的增加,其降低幅度较小;可有效降低中低压配网的网损率,应用效果显著.

Abstract

To enhance the power transmission quality of photovoltaic generator units integrated with medium and low voltage distribution networks and to minimize network loss rates,this paper explores the configuration of reactive power compensation within the distribution network based on mixed integer convex programming.Taking the minimum network loss of the medium and low voltage distribution network with photovoltaic power generation as the goal,the proposed method constructs a mathematical model of reactive power compensation of the distribution network.The findings from the experimental evaluations indicate that the application of the proposed method significantly reduces the per-unit voltage at the nodes of the distribution network.Moreover,it is observed that as the network's operational time increases,the reduction in voltage amplitude becomes marginally less pronounced.The model has been proven to effectively mitigate the loss rate in medium and low voltage distribution networks,offering a notable improvement in practical application outcomes.

关键词

整数凸规划/中低压配网/无功补偿/配置方法/约束条件/数学模型

Key words

integer convex programming/medium and low voltage distribution network/reactive power compensation/configuration method/constraints/mathematical model

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基金项目

内蒙古自治区科技计划项目(2020GG0299)

内蒙古电力(集团)有限责任公司科技项目(NMDL2022-10-0010)

内蒙古电力(集团)有限责任公司乌兰察布供电分公司科技项目(WM2022000868)

出版年

2024
电网与清洁能源
西北电网有限公司 西安理工大学水电土木建筑研究设计院

电网与清洁能源

CSTPCD北大核心
影响因子:1.122
ISSN:1674-3814
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