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Fault Location and Classification for Distribution Systems Based on Deep Graph Learning Methods

delete2023-01-01
delete21
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OA
AI
J
Jiaxiang Hu
胡维昊 封面图
胡维昊 (Weihao Hu) *
陈建军 封面图
陈建军 (Jianjun Chen)
D
Di Cao
Z
Zhengyuan Zhang
Z
Zhou Liu
陈真 封面图
陈真 (Zhe Chen)
F
Frede Blaabjerg
DOI:10.35833/MPCE.2022.000204delete
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摘要

摘要

En 中文
Accurate and timely fault diagnosis is of great significance for the safe operation and power supply reliability of distribution systems. However, traditional intelligent methods limit the use of the physical structures and data information of power networks. To this end, this study proposes a fault diagnostic model for distribution systems based on deep graph learning. This model considers the physical structure of the power network as a significant constraint during model training, which endows the model with stronger information perception to resist abnormal data input and unknown application conditions. In addition, a special spatiotemporal convolutional block is utilized to enhance the waveform feature extraction ability. This enables the proposed fault diagnostic model to be more effective in dealing with both fault waveform changes and the spatial effects of faults. In addition, a multi-task learning framework is constructed for fault location and fault type analysis, which improves the performance and generalization ability of the model. The IEEE 33-bus and IEEE 37-bus test systems are modeled to verify the effectiveness of the proposed fault diagnostic model. Finally, different fault conditions, topological changes, and interference factors are considered to evaluate the anti-interference and generalization performance of the proposed model. Experimental results demonstrate that the proposed model outperforms other state-of-the-art methods.
Keyword:
Fault location
Feature extraction
Circuit faults
Distribution networks
Laplace equations
Training
Spatiotemporal phenomena
Fault diagnosis
fault location
fault type analysis
distribution system
deep graph learning
multi-task learning

期刊

Journal of Modern Power Systems and Clean Energy 封面图
Journal of Modern Power Systems and Clean Energy
IF:
6.1
论文数:
1.6K
被引数:
6.0K

机构

A
aalborg university
学者数:
1.6W
论文数: 1.7W
被引数: 22
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