Applied Sciences (Aug 2022)

Automatic Identification of Landslides Based on Deep Learning

  • Shuang Yang,
  • Yuzhu Wang,
  • Panzhe Wang,
  • Jingqin Mu,
  • Shoutao Jiao,
  • Xupeng Zhao,
  • Zhenhua Wang,
  • Kaijian Wang,
  • Yueqin Zhu

DOI
https://doi.org/10.3390/app12168153
Journal volume & issue
Vol. 12, no. 16
p. 8153

Abstract

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A landslide is a kind of geological disaster with high frequency, great destructiveness, and wide distribution today. The occurrence of landslide disasters bring huge losses of life and property. In disaster relief operations, timely and reliable intervention measures are very important to prevent the recurrence of landslides or secondary disasters. However, traditional landslide identification methods are mainly based on visual interpretation and on-site investigation, which are time-consuming and inefficient. They cannot meet the time requirements in disaster relief operations. Therefore, to solve this problem, developing an automatic identification method for landslides is very important. This paper proposes such a method. We combined deep learning with landslide extraction from remote sensing images, used a semantic segmentation model to complete the automatic identification process of landslides and used the evaluation indicators in the semantic segmentation task (mean IoU [mIoU], recall, and precision) to measure the performance of the model. We selected three classic semantic segmentation models (U-Net, DeepLabv3+, PSPNet), tried to use different backbone networks for them and finally arrived at the most suitable model for landslide recognition. According to the experimental results, the best recognition accuracy of PSPNet is with the classification network ResNet50 as the backbone network. The mIoU is 91.18%, which represents high accuracy; Through this experiment, we demonstrated the feasibility and effectiveness of deep learning methods in landslide identification.

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