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DAAINet: Domain Adversarial Anti-Interference Network for Bi-Temporal Change Detection †

  • Jiyuan Yang
  • , Kun Gao
  • , Baiyang Hu
  • , Zefeng Zhang
  • , Jingyi Wang
  • , Yuqing He*
  • , Yunpeng Feng
  • *Corresponding author for this work
  • Beijing Institute of Technology

Research output: Contribution to journalArticlepeer-review

Abstract

Bi-temporal change detection (CD) in remote sensing (RS) aims to map image pairs at different times into a shared feature space to discriminate variant regions effectively. However, factors such as cloud interference may disrupt the feature distribution of RS images and cause pseudo-change problems. Existing public change detection datasets also pay less attention to such pseudo-change phenomena. To address the pseudo-change problems of CD applications, we propose a Domain Adversarial Anti-Interference Change Detection Network (DAAINet), which uses ResNet to extract multi-scale features from the original input images. Semantic features are then obtained and fed into a subsequent graph convolution module after soft clustering, by introducing a domain adversarial structure to align the feature space in RS images. In the graph convolution module, the association of node context is utilized to predict the adjacency relationship between objects. We collected data and constructed a real-world dataset called “Cloud Interference Change Detection” (CICD), which focuses on real bi-temporal remote sensing image data containing cloud interference and includes pseudo-changes caused by factors such as the presence of temporary objects and illumination changes. Experimental results demonstrate that our method is more robust and efficient compared to other state-of-the-art methods on two public CD datasets, and achieves state-of-the-art performance on the noise-corrupted CICD dataset, surpassing prior methods by up to 5.67%p in IoU and 1.42%p in recall.

Original languageEnglish
Article number1656
JournalRemote Sensing
Volume18
Issue number10
DOIs
Publication statusPublished - May 2026
Externally publishedYes

Keywords

  • change detection
  • cloud interference
  • convolutional neural network
  • domain adaptation
  • graph convolutional networks
  • pseudo-change
  • remote sensing

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