Dual Path Attention Network (DPANet) for Intelligent Identification of Wenchuan Landslides

Author:

Wang Xiao1,Wang Di2,Sun Tiegang3,Dong Jianhui1,Xu Luting1ORCID,Li Weile2ORCID,Li Shaoda2,Ran Peilian2ORCID,Ao Jinxi1,Zou Yulan1,Wang Jing1,Zeng Xinnian1

Affiliation:

1. School of Architecture and Civil Engineering, Chengdu University, Chengdu 610106, China

2. College of Earth Sciences, Chengdu University of Technology, Chengdu 610059, China

3. China Building Materials Southwest Survey and Design Co., Ltd., Chengdu 610052, China

Abstract

Currently, the application of remote sensing technology in landslide identification and investigation is an important research direction in the field of landslides. To address the errors arising from the inaccurate extraction of texture and location information in landslide intelligent recognition, we developed a new network, the dual path attention network (DPANet), and performed experiments in a typical alpine canyon area (Wenchuan County). The results show that the new network recognizes landslide areas with an overall accuracy (OA) and pixel accuracy (PA) of 0.93 and 0.87, respectively, constituting an overall improvement of 4% and 18% compared to the base pyramid scene parsing network (PSPNet). We applied our knowledge of the landslide image features to other areas in the upper reaches of the Minjiang River to enrich the landslide database for this region. Our evaluation of the results shows that the proposed network framework has good robustness and can accurately identify some complex landslides, providing an excellent contribution to the intelligent recognition of landslides.

Funder

National Key Research and Development Program of China

Publisher

MDPI AG

Subject

General Earth and Planetary Sciences

Reference57 articles.

1. Submarine Landslides;Hampton;Rev. Geophys.,1996

2. Fell, R., Ho, K.K.S., Lacasse, S., and Leroi, E. (2005). Landslide Risk Management, CRC Press.

3. Landslides Triggered by Slipping-Fault-Generated Earthquake on a Plateau: An Example of the 14 April 2010, Ms 7.1, Yushu, China Earthquake;Xu;Landslides,2013

4. Framework for the Identification of Shallow Ground Movement in Modified Slopes (an Expert Opinion);Ibrahim;Proceedings of the IOP Conference Series: Earth and Environmental Science,2022

5. A Quick and Low-Cost Smartphone Photogrammetry Method for Obtaining 3D Particle Size and Shape;Fang;Eng. Geol.,2023

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