SEMANTIC SEGMENTATION OF REMOTE SENSING IMAGERY USING AN ENHANCED ENCODER-DECODER ARCHITECTURE

被引:0
作者
Aburaed, N. [1 ,2 ]
Al-Saad, M. [1 ]
Alkhatib, M. Q. [1 ]
Zitouni, M. S. [1 ]
Almansoori, S. [3 ]
Al-Ahmad, H. [1 ]
机构
[1] Univ Dubai, Coll Engn & IT, Dubai, U Arab Emirates
[2] Univ Strathclyde, Dept Elect & Elect Engn, Glasgow, Scotland
[3] Mohammed Bin Rashid Space Ctr, Dubai, U Arab Emirates
来源
GEOSPATIAL WEEK 2023, VOL. 10-1 | 2023年
关键词
Deep Learning; Semantic Segmentation; RUNET; UNET; Remote Sensing; Squeeze and Excitation; CLASSIFICATION;
D O I
10.5194/isprs-annals-X-1-W1-2023-1015-2023
中图分类号
K85 [文物考古];
学科分类号
0601 ;
摘要
Semantic segmentation is one of most the important computer vision tasks for the analysis of aerial imagery in many remote sensing applications, such as resource surveys, disaster detection, and urban planning. This area of research still faces unsolved challenges, especially in cluttered environments and complex sceneries. This study presents a repurposed Robust UNet (RUNet) architecture for semantic segmentation, and embeds the architecture with attention mechanism in order to enhance feature extraction and construction of segmentation maps. The attention mechanism is achieved using Squeeze-and-Excitation (SE) block. The resulting network is referred to as SE-RUNet. SE is also tested with the classical UNet, termed SE-UNet, to verify the efficiency of introducing SE. The proposed approach is trained and tested using "Semantic Segmentation of Aerial Imagery" dataset. The results are evaluated using Accuracy, Precision, Recall, F-score and mean Intersection over Union (mIoU) metrics. Comparative evaluation and experimental results show that using SE to embed attention mechanism into UNet and RUNet significantly improves the overall performance.
引用
收藏
页码:1015 / 1020
页数:6
相关论文
共 27 条
[11]  
He KM, 2020, IEEE T PATTERN ANAL, V42, P386, DOI [10.1109/TPAMI.2018.2844175, 10.1109/ICCV.2017.322]
[12]  
Hongshun Chen, 2019, 2019 IEEE 4th International Conference on Image, Vision and Computing (ICIVC), P227, DOI 10.1109/ICIVC47709.2019.8981046
[13]   RUNet: A Robust UNet Architecture for Image Super-Resolution [J].
Hu, Xiaodan ;
Naiel, Mohamed A. ;
Wong, Alexander ;
Lamm, Mark ;
Fieguth, Paul .
2019 IEEE/CVF CONFERENCE ON COMPUTER VISION AND PATTERN RECOGNITION WORKSHOPS (CVPRW 2019), 2019, :505-507
[14]  
Kurbatova E., 2019, 2019 8 MED C EMB COM, P1
[15]   Building segmentation from satellite imagery using U-Net with ResNet encoder [J].
Liu, Zhongwei ;
Chen, Baisong ;
Zhang, Ao .
2020 5TH INTERNATIONAL CONFERENCE ON MECHANICAL, CONTROL AND COMPUTER ENGINEERING (ICMCCE 2020), 2020, :1967-1971
[16]  
Long J, 2015, PROC CVPR IEEE, P3431, DOI 10.1109/CVPR.2015.7298965
[17]  
Loop H., 2020, Semantic segmentation of aerial imagery
[18]  
Ma HR, 2013, 2013 6TH INTERNATIONAL CONGRESS ON IMAGE AND SIGNAL PROCESSING (CISP), VOLS 1-3, P626, DOI 10.1109/CISP.2013.6745242
[19]   Comparing Machine and Deep Learning Methods for Large 3D Heritage Semantic Segmentation [J].
Matrone, Francesca ;
Grilli, Eleonora ;
Martini, Massimo ;
Paolanti, Marina ;
Pierdicca, Roberto ;
Remondino, Fabio .
ISPRS INTERNATIONAL JOURNAL OF GEO-INFORMATION, 2020, 9 (09)
[20]   Fully convolutional networks for land cover classification from historical panchromatic aerial photographs [J].
Mboga, Nicholus ;
Grippa, Tais ;
Georganos, Stefanos ;
Vanhuysse, Sabine ;
Smets, Benoit ;
Dewitte, Olivier ;
Wolff, Eleonore ;
Lennert, Moritz .
ISPRS JOURNAL OF PHOTOGRAMMETRY AND REMOTE SENSING, 2020, 167 :385-395