Automatic Coastline Extraction and Changes Analysis Using Remote Sensing and GIS Technology

Автоматическое выделение береговой линии и анализ ее изменений с использованием технологий дистанционного зондирования и ГИС
Muhammad Yasir, Hui Sheng, Hong Fan, Shah Nazir, Abdoul Jelil Niang, Md. Salauddin, Sulaiman Khan
2020-01-01

Canny edge detectionDigital Shoreline Analysis SystemLandsat imageryautomatic coastline extractionshoreline change analysis
This study highlights the coastline position changes of Qingdao coastal area from 2000 to 2019, using GIS and remote sensing technologies through Digital Shoreline Analysis System and LANDSAT images. Understanding the coastline movement by suitable method is an important challenge for this extremely dynamic coast. The shoreline changes were statistically measured using three techniques, namely; Linear Regression Rate, End Point Rate and Net Shoreline Movement. For the automatic coastline extraction, different methods were applied, but among them most suitable techniques is the canny edge algorithm technique, which gives the accurate result. The result show maximum accretion reached was 266.07m/yr, 2391.85m,124.47m/yr for End point rate, net shoreline movement and linear regression rate, respectively. While, the maximum erosion was -142.55m/yr, -1234.59m, -63.22m/yr for End point rate, net shoreline movement and linear regression rate, respectively. This paper hence presents the monitoring processes of coast and analyzing the coastline change by the use of geospatial techniques that would be helpful for the coastal planning and management of the Qingdao coast. The applicability of the proposed model is tested with other generic edge detection algorithms that include; Sobel, Prewitt, and Robert edge detection techniques and it was concluded that our model outperforming in accurately detecting the coastline.
1
Canny outperformed Sobel, Prewitt, and Roberts edge-detection algorithms for coastline detection, supporting its use in coastal planning and management.
2
Maximum accretion reached 266.07 m/yr by End Point Rate, 2391.85 m by Net Shoreline Movement, and 124.47 m/yr by Linear Regression Rate.
3
Maximum erosion reached −142.55 m/yr by End Point Rate, −1234.59 m by Net Shoreline Movement, and −63.22 m/yr by Linear Regression Rate.
4
Qingdao’s coastline changes from 2000 to 2019 were quantified using Landsat imagery, GIS, and the Digital Shoreline Analysis System.
5
The Canny edge detection algorithm provided the most accurate automatic coastline extraction among the tested methods.

Qingdao coastal area coastline from 2000 to 2019

Coastline position changes, including accretion and erosion rates and shoreline movement

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2020-01-01
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Muhammad Yasir
Hui Sheng
Hong Fan
Shah Nazir
Abdoul Jelil Niang
Md. Salauddin
Sulaiman Khan
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