<--- Back to Details
First PageDocument Content
Computer vision / Stereophotogrammetry / 3D imaging / Artificial intelligence / Image processing / Robotic sensing / 3D reconstruction / Range imaging / Stereoscopy / Triangulation / Stereophonic sound / Visual odometry
Date: 2018-08-04 04:56:25
Computer vision
Stereophotogrammetry
3D imaging
Artificial intelligence
Image processing
Robotic sensing
3D reconstruction
Range imaging
Stereoscopy
Triangulation
Stereophonic sound
Visual odometry

Paper accepted at the European Conf. on Computer Vision (ECCV), Munich, Semi-Dense 3D Reconstruction with a Stereo Event Camera Yi Zhou1,2 , Guillermo Gallego3 , Henri Rebecq3 , Laurent Kneip4 , Hongdong Li1,2 , a

Add to Reading List

Source URL: rpg.ifi.uzh.ch

Download Document from Source Website

File Size: 1,76 MB

Share Document on Facebook

Similar Documents

Two Channel Listening Systems Stereophonic sound gained universal acceptance in the late 1960’s as the optimal way to enjoy high fidelity audio recordings in the home environment. Over the years many variations and ada

Two Channel Listening Systems Stereophonic sound gained universal acceptance in the late 1960’s as the optimal way to enjoy high fidelity audio recordings in the home environment. Over the years many variations and ada

DocID: 1uS1A - View Document

Hybrid Kinect Depth Map Refinement For Transparent Objects Gorkem Saygili Laurens van der Maaten

Hybrid Kinect Depth Map Refinement For Transparent Objects Gorkem Saygili Laurens van der Maaten

DocID: 1rit7 - View Document

z-K6 manual  © 2001, Z-Systems Audio Engineering The z-K6 K-Surround Processor

z-K6 manual © 2001, Z-Systems Audio Engineering The z-K6 K-Surround Processor

DocID: 1rhL7 - View Document

Incorporating On-demand Stereo for Real Time Recognition T. Deselaers1,2 , A. Criminisi1 , J. Winn1 and A. Agarwal1 1 Microsoft Research Ltd., Cambridge, United Kingdom 2 Human Language Technology and Pattern Recognition

Incorporating On-demand Stereo for Real Time Recognition T. Deselaers1,2 , A. Criminisi1 , J. Winn1 and A. Agarwal1 1 Microsoft Research Ltd., Cambridge, United Kingdom 2 Human Language Technology and Pattern Recognition

DocID: 1rcL2 - View Document

Indoor Localization without Infrastructure using the Acoustic Background Spectrum Stephen P. Tarzia∗ ∗  Peter A. Dinda∗

Indoor Localization without Infrastructure using the Acoustic Background Spectrum Stephen P. Tarzia∗ ∗ Peter A. Dinda∗

DocID: 1rcb5 - View Document