Real-time interest point tracking(15th July 2013) |
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As mentioned in an other article about omnidirectional cameras, my Master's Thesis' main topic was real-time interest point extraction and tracking on an omnidirectional image in a challenging forest environment. I found OpenCV's routines mostly rather slow and running in a single thread, so I ended up implementing everything myself to gain more control on the data flow and threads' dependencies. The implemented code would simultaneously use 4 threads on CPU and a few hundred on the GPU, executing interest point extraction and matching at 27 fps (37 ms/frame) for 1800 × 360 pixels (≈0.65 Mpix) panoramic image.
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Omnidirectional cameras(6th July 2013) |
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My Masters of Science Thesis involved the usage of a so-called "omnidirectional camera". There are various ways of achieving 180° or even 360° view, with their distinct pros and cons. The general benefit of these alternative camera systems is that objects don't need to be tracked, because generally they stay withing the extremely broad Field of View (FoV) of the camera. This is also very beneficial in visual odometry tasks, because landmarks can be tracked for longer periods of time.
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Fingerprint matching algorithm(25th June 2013) |
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For my Bachelor of Science degree I developed a novel fingerprint matching algorithm, which ended up beating many alternative methods which were developed by research groups around the world. The used dataset the same which was used for FVC 2000 (Fingerprint Verification Competition).
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