Real-Time Camera Tracking and 3D Reconstruction Using Signed Distance Functions (bibtex)
by E. Bylow, J. Sturm, C. Kerl, F. Kahl and D. Cremers
Reference:
Real-Time Camera Tracking and 3D Reconstruction Using Signed Distance Functions (E. Bylow, J. Sturm, C. Kerl, F. Kahl and D. Cremers), In Robotics: Science and Systems Conference (RSS), 2013. 
Bibtex Entry:
@inproceedings{bylow_etal_rss2013,
 title = {Real-Time Camera Tracking and 3D Reconstruction Using Signed Distance Functions},
 author = {E. Bylow and J. Sturm and C. Kerl and F. Kahl and D. Cremers},
 booktitle = {Robotics: Science and Systems Conference (RSS)},
 year = {2013},
 month = {June},
 keywords = {rgb-d,rgb-d benchmark,sturmselection,vslam},
}
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Real-Time Camera Tracking and 3D Reconstruction Using Signed Distance Functions (bibtex)
Real-Time Camera Tracking and 3D Reconstruction Using Signed Distance Functions (bibtex)
by E. Bylow, J. Sturm, C. Kerl, F. Kahl and D. Cremers
Reference:
Real-Time Camera Tracking and 3D Reconstruction Using Signed Distance Functions (E. Bylow, J. Sturm, C. Kerl, F. Kahl and D. Cremers), In Robotics: Science and Systems Conference (RSS), 2013. 
Bibtex Entry:
@inproceedings{bylow_etal_rss2013,
 title = {Real-Time Camera Tracking and 3D Reconstruction Using Signed Distance Functions},
 author = {E. Bylow and J. Sturm and C. Kerl and F. Kahl and D. Cremers},
 booktitle = {Robotics: Science and Systems Conference (RSS)},
 year = {2013},
 month = {June},
 keywords = {rgb-d,rgb-d benchmark,sturmselection,vslam},
}
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You're viewing the old homepage. The new homepage of Jürgen Sturm is located here: http://jsturm.de.

I am fascinated by the immense progress and application potential of computer vision and robotics research. My motivation is to push the state-of-the-art by developing novel approaches and applying these methods to solve real-world problems. For example, our approach to autonomous quadrocopter flight enables a low-cost quadrocopter to follow its trajectory using a camera as its main sensor while taking a series of images. Our 3D reconstruction algorithm allows to scan persons in 3D and print the acquired model as a small figure. As I see a large potential for commercial applications of such methods, I recently co-founded the university spin-off FabliTec to bring this technology to market.

I am currently working in the following research areas:

RGB-D sensors (Kinect) including visual odometry, SLAM, dense 3D reconstruction, mapping, localization, pose tracking and benchmarking
Quadcopter, including camera-based localization, dense mapping, data fusion, safe navigation and, when all of this works, flying manipulation



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