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Motion Invariant Photography Anat Levin Peter Sand Taeg Sang Cho Fr´ edo Durand William T. Freeman Massachusetts Institute of Technology, Computer Science and Artificial Intelligence Laboratory

Motion Invariant Photography - MIT CSAIL

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Page 1: Motion Invariant Photography - MIT CSAIL

Motion Invariant Photography

Anat Levin Peter Sand Taeg Sang Cho

Fredo Durand William T. Freeman

Massachusetts Institute of Technology,

Computer Science and Artificial Intelligence Laboratory

Page 2: Motion Invariant Photography - MIT CSAIL

Linear-rail motions

Page 3: Motion Invariant Photography - MIT CSAIL

Static Camera

Page 4: Motion Invariant Photography - MIT CSAIL

Our Camera

Page 5: Motion Invariant Photography - MIT CSAIL

Our Result

Page 6: Motion Invariant Photography - MIT CSAIL

Static Camera

Page 7: Motion Invariant Photography - MIT CSAIL

Our Camera

Page 8: Motion Invariant Photography - MIT CSAIL

Our Result

Page 9: Motion Invariant Photography - MIT CSAIL

Static Camera

Page 10: Motion Invariant Photography - MIT CSAIL

Our Camera

Page 11: Motion Invariant Photography - MIT CSAIL

Our Result

Page 12: Motion Invariant Photography - MIT CSAIL

Human motion

Page 13: Motion Invariant Photography - MIT CSAIL

Static Camera

Page 14: Motion Invariant Photography - MIT CSAIL

Our Camera

Page 15: Motion Invariant Photography - MIT CSAIL

Our Result

Page 16: Motion Invariant Photography - MIT CSAIL

Static Camera

Page 17: Motion Invariant Photography - MIT CSAIL

Our Camera

Page 18: Motion Invariant Photography - MIT CSAIL

Our Result

Page 19: Motion Invariant Photography - MIT CSAIL

Static Camera

Page 20: Motion Invariant Photography - MIT CSAIL

Our Camera

Page 21: Motion Invariant Photography - MIT CSAIL

Our Result

Page 22: Motion Invariant Photography - MIT CSAIL

Static Camera

Page 23: Motion Invariant Photography - MIT CSAIL

Our Camera

Page 24: Motion Invariant Photography - MIT CSAIL

Our Result

Deviation from horizontal motion- forward motion

Page 25: Motion Invariant Photography - MIT CSAIL

Static Camera

Page 26: Motion Invariant Photography - MIT CSAIL

Our Camera

Page 27: Motion Invariant Photography - MIT CSAIL

Our Result

Deviation from horizontal motion- vertical hands motion

Page 28: Motion Invariant Photography - MIT CSAIL

Static Camera

Page 29: Motion Invariant Photography - MIT CSAIL

Our Camera

Page 30: Motion Invariant Photography - MIT CSAIL

Our Result

Page 31: Motion Invariant Photography - MIT CSAIL

Static Camera

Page 32: Motion Invariant Photography - MIT CSAIL

Our Camera

Page 33: Motion Invariant Photography - MIT CSAIL

Our Result

Page 34: Motion Invariant Photography - MIT CSAIL

Static Camera

Page 35: Motion Invariant Photography - MIT CSAIL

Our Camera

Page 36: Motion Invariant Photography - MIT CSAIL

Our Result

Page 37: Motion Invariant Photography - MIT CSAIL

Human motion failures

Page 38: Motion Invariant Photography - MIT CSAIL

Static Camera

Page 39: Motion Invariant Photography - MIT CSAIL

Our Camera

Page 40: Motion Invariant Photography - MIT CSAIL

Our Result

Standing-up motion. Motion is mostly vertical leading to artifacts in the deblurred face.

Some clothing deblurred properly, despite the dominant horizontal component.

Page 41: Motion Invariant Photography - MIT CSAIL

Static Camera

Page 42: Motion Invariant Photography - MIT CSAIL

Our Camera

Page 43: Motion Invariant Photography - MIT CSAIL

Our Result

Rotation, generating object velocities at all orientations and many different speeds.

Considering the non horizontal orientation range, deblurring result is relatively good.

Page 44: Motion Invariant Photography - MIT CSAIL

Static Camera

High motion velocity. Notice the head smear.

Page 45: Motion Invariant Photography - MIT CSAIL

Our Camera

Page 46: Motion Invariant Photography - MIT CSAIL

Our Result

High motion velocity. Low SNR and PSF tail artifacts.