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Author(s):
Wang, Y.; Zhu, X. X.; Zeisl, B.; Pollefeys, M.
Title:
Fusing {Meter}-{Resolution} 4-{D} {InSAR} {Point} {Clouds} and {Optical} {Images} for {Semantic} {Urban} {Infrastructure} {Monitoring}
Abstract:
Using synthetic aperture radar (SAR) interferometry to monitor long-term millimeter-level deformation of urban infrastructures, such as individual buildings and bridges, is an emerging and important field in remote sensing. In the state-of-the-art methods, deformation parameters are retrieved and monitored on a pixel basis solely in the SAR image domain. However, the inevitable side-looking imaging geometry of SAR results in undesired occlusion and layover in urban area, rendering the current me...     »
Keywords:
Adaptive optics, Bridge monitoring, interferometric synthetic aperture radar (InSAR), Optical imaging, optical InSAR fusion, Optical interferometry, Optical scattering, Optical sensors, railway monitoring, SAR, semantic classification, Synthetic aperture radar, Three-dimensional displays
Journal title:
IEEE Transactions on Geoscience and Remote Sensing
Year:
2017
Journal volume:
55
Month:
jan
Journal issue:
1
Pages contribution:
14--26
Fulltext / DOI:
doi:10.1109/TGRS.2016.2554563
Print-ISSN:
0196-2892
Notes:
00002
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