|
26 Aug 2015
LANDSLIDE ACTIVITY MONITORING WITH THE HELP OF UNMANNED AERIAL VEHICLE
V. Peterman
Viewed
Total article views: 1,442 (including HTML, PDF, and XML)
HTML |
PDF |
XML |
Total |
BibTeX |
EndNote |
837 |
575 |
30 |
1,442 |
38 |
33 |
- HTML: 837
- PDF: 575
- XML: 30
- Total: 1,442
- BibTeX: 38
- EndNote: 33
Views and downloads (calculated since 26 Aug 2015)
Cumulative views and downloads
(calculated since 26 Aug 2015)
Cited
19 citations as recorded by crossref.
-
Digital survey in studying open pit wall deformations
V. Kalinichenko et al.
10.1051/e3sconf/201912301047
-
Measurement of Road Surface Deformation Using Images Captured from UAVs
J. Cardenal et al.
10.3390/rs11121507
-
Choosing a camera for mine surveying of mining enterprise facilities using unmanned aerial vehicles
V. Kalinichenko et al.
10.33271/mining14.04.031
-
Unmanned aerial vehicle (UAV)-based monitoring of a landslide: Gallenzerkogel landslide (Ybbs-Lower Austria) case study
R. Eker et al.
10.1007/s10661-017-6402-8
-
Can Drones Map Earth Cracks? Landslide Measurements in North Greece Using UAV Photogrammetry for Nature-Based Solutions
P. Koutalakis et al.
10.3390/su13094697
-
Structure from Motion Multisource Application for Landslide Characterization and Monitoring: The Champlas du Col Case Study, Sestriere, North-Western Italy
M. Cignetti et al.
10.3390/s19102364
-
Monitoring 3D areal displacements by a new methodology and software using UAV photogrammetry
K. Hastaoğlu et al.
10.1016/j.jag.2019.101916
-
Debris Flow and Rockslide Analysis with Advanced Photogrammetry Techniques Based on High-Resolution RPAS Data. Ponte Formazza Case Study (NW Alps)
D. Notti et al.
10.3390/rs13091797
-
Detection of existing infrastructure lines with wearable laser scanners and making infrastructure map: a case of Mersin University
A. ULVİ et al.
10.53093/mephoj.1036301
-
Successive landsliding and damming of the Jinsha River in eastern Tibet, China: prime investigation, early warning, and emergency response
X. Fan et al.
10.1007/s10346-019-01159-x
-
Long-term retrospective investigation of a large, deep-seated, and slow-moving landslide using InSAR time series, historical aerial photographs, and UAV data: The case of Devrek landslide (NW Turkey)
R. Eker & A. Aydın
10.1016/j.catena.2020.104895
-
The use of the construction with a digital camera and GPS receiver while researching dangerous areas
O. Dolgikh et al.
10.1051/e3sconf/202128008009
-
Mapping hazardous mining-induced sinkhole subsidence using unmanned aerial vehicle (drone) photogrammetry
J. Suh & Y. Choi
10.1007/s12665-017-6458-3
-
Acquiring high-resolution topography and performing spatial analysis of loess landslides by using low-cost UAVs
S. Hu et al.
10.1007/s10346-017-0922-8
-
Repeated UAV Campaigns, GNSS Measurements, GIS, and Petrographic Analyses for Landslide Mapping and Monitoring
A. Kyriou et al.
10.3390/min11030300
-
Tracking deformation velocity via PSI and SBAS as a sign of landslide failure: an open-pit mine-induced landslide in Himmetoğlu (Bolu, NW Turkey)
R. Eker et al.
10.1007/s11069-024-06533-0
-
Analysis of Landslide Evolution Affecting Olive Groves Using UAV and Photogrammetric Techniques
T. Fernández et al.
10.3390/rs8100837
-
High precision slope deformation monitoring by UAV with industrial photogrammetry
M. Li et al.
10.1088/1755-1315/636/1/012015
-
Monitoring of landslide displacements using UAS and control methods based on lines
A. Mozas-Calvache et al.
10.1007/s10346-017-0842-7
Latest update: 23 Nov 2024