The Prediction of Transmission Towers' Foundation Ground Subsidence in the Salt Lake Area Based on Multi-Temporal Interferometric Synthetic Aperture Radar and Deep Learning.
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%0 Journal Article
%1 journals/remotesensing/JinZYGYGZL23
%A Jin, Bijing
%A Zeng, Taorui
%A Yang, Taohui
%A Gui, Lei
%A Yin, Kunlong
%A Guo, Baorui
%A Zhao, Binbin
%A Li, Qiuyang
%D 2023
%J Remote. Sens.
%K dblp
%N 19
%P 4805
%T The Prediction of Transmission Towers' Foundation Ground Subsidence in the Salt Lake Area Based on Multi-Temporal Interferometric Synthetic Aperture Radar and Deep Learning.
%U http://dblp.uni-trier.de/db/journals/remotesensing/remotesensing15.html#JinZYGYGZL23
%V 15
@article{journals/remotesensing/JinZYGYGZL23,
added-at = {2024-01-26T00:00:00.000+0100},
author = {Jin, Bijing and Zeng, Taorui and Yang, Taohui and Gui, Lei and Yin, Kunlong and Guo, Baorui and Zhao, Binbin and Li, Qiuyang},
biburl = {https://www.bibsonomy.org/bibtex/26c40bc512527ff6811d406d1fe4bc1b5/dblp},
ee = {https://doi.org/10.3390/rs15194805},
interhash = {93403a7bd82e3cdf8cf647bcc2880b2f},
intrahash = {6c40bc512527ff6811d406d1fe4bc1b5},
journal = {Remote. Sens.},
keywords = {dblp},
month = {October},
number = 19,
pages = 4805,
timestamp = {2024-04-08T11:49:34.000+0200},
title = {The Prediction of Transmission Towers' Foundation Ground Subsidence in the Salt Lake Area Based on Multi-Temporal Interferometric Synthetic Aperture Radar and Deep Learning.},
url = {http://dblp.uni-trier.de/db/journals/remotesensing/remotesensing15.html#JinZYGYGZL23},
volume = 15,
year = 2023
}