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基于光谱通道拼接与多级注意力融合的绝缘纸聚合度定量评估技术

  • Han Li
  • , Weizhe Sun
  • , Shaorui Qin
  • , Xiyuan Chen
  • , Guanjun Zhang
  • , Yuan Li
  • School of Electrical Engineering
  • State Grid Anhui Electric Power Research Institute

科研成果: 期刊稿件文章同行评审

1 引用 (Scopus)

摘要

Near-infrared spectroscopy (NIRS) is an emerging non-destructive method for quantitatively assessing the degree of polymerization (DP) of transformer insulating paper. To enhance the accuracy and generalization ability of this technique under complex on-site conditions, a deep learning framework based on spectral differential channel concatenation and multi-level attention fusion is proposed. A spectral database consisting of 300 samples with various aging states from six typical paper types is constructed. The first- and second-order differential preprocessing channels are integrated, and data augmentation is performed using baseline drift simulation and random noise injection. A SENet-based module is introduced in the channel domain to adaptively extract the weight of each preprocessing feature, while a Transformer encoder is used in the wavelength domain to capture long-range nonlinear dependencies in the spectral sequences. Results show that the multi-level attention fusion model effectively captures long-range dependencies across spectra and focuses attention on the characteristic absorption regions of C-H and C= O functional groups. The model achieves an RMSE of 45.6 and a MAPE of 5.01% on the test set, outperforming six other benchmark models. In field experiments, the relative error of DP prediction is consistently below 5%, therefore, the proposed method can be used to provide accurate and rapid assessment of insulating paper aging in complex conditions.

投稿的翻译标题Quantitative Assessment of Degree of Polymerization of Insulating Paper by Spectral Channel Concatenation and Multi-level Attention Fusion
源语言繁体中文
页(从-至)3437-3447
页数11
期刊Gaodianya Jishu/High Voltage Engineering
52
7
DOI
出版状态已出版 - 31 7月 2026
已对外发布

关键词

  • attention
  • deep learning
  • degree of polymerization
  • insulating paper
  • near-infrared spectroscopy

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