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改进SECBAM-Densenet的配电网谐波水平估计模型

汪颖 赵奕帆 殷毓杉 王心茹 董一帆

电测与仪表2026,Vol.63Issue(6):73-83,11.
电测与仪表2026,Vol.63Issue(6):73-83,11.DOI:10.19753/j.issn1001-1390.2026.06.008

改进SECBAM-Densenet的配电网谐波水平估计模型

Improved SECBAM-Densenet distribution network harmonic level estimation model

汪颖 1赵奕帆 1殷毓杉 1王心茹 1董一帆1

作者信息

  • 1. 四川大学 电气工程学院,成都 610065
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摘要

Abstract

Panoramic sensing of harmonic levels in distribution network is an important means to achieve power quality control.However,the distribution network has many points and is constrained by the high cost and opera-tion and maintenance workload of power quality monitoring(PQM)devices,which makes it difficult to widely con-figure monitoring devices at each node to realize the panoramic sensing of harmonic levels.In order to solve the a-bove problems,a harmonic level estimation model based on improved spatial and channel attention augmentation and densely connected network(SECBAM-Densenet)is proposed in this paper.Active power,reactive power,harmonic voltages,harmonic currents,and other electrical characteristics are collected by portable PQMat the grid-connected points that are not equipped with stationary PQM.The SECBAM-Densenet model is trained with the measured data to establish a nonlinear mapping relationship between the input characteristics and harmonic levels,and the correction matrix and constraint terms are constructed to improve the estimation effect of the model.The harmonic levels of the distribution network are effectively estimated in real time by applying the measured active power and reactive power of the electricity meter and other operating data.The example results verify the accuracy of the proposed estimation method and provide a feasible solution for harmonic sensing in distribution networks without PQM nodes.

关键词

电能质量/数据驱动/谐波水平估计/空间与通道注意力增强/密集连接网络

Key words

power quality/data-driven/harmonic level estimation/SECBAM/densenet

分类

信息技术与安全科学

引用本文复制引用

汪颖,赵奕帆,殷毓杉,王心茹,董一帆..改进SECBAM-Densenet的配电网谐波水平估计模型[J].电测与仪表,2026,63(6):73-83,11.

基金项目

四川省自然科学基金资助项目(2025NSFTD0019) (2025NSFTD0019)

电测与仪表

1001-1390

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