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Simpsons @ work

Simpsons @ work. Why temporal segmentation?. Terms. A Shot. smallest piece of information elementary building block of a video. A Cut. Easy Most common 95% of all transitions are cuts. A Fade-in. Often used at the start of a chapter From Black Color to Image Linear intensity change.

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Simpsons @ work

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  1. Simpsons @ work

  2. Why temporal segmentation?

  3. Terms

  4. A Shot • smallest piece of information • elementary building block of a video

  5. A Cut • Easy • Most common • 95% of all transitions are cuts

  6. A Fade-in • Often used at the start of a chapter • From Black Color to Image • Linear intensity change

  7. A Fade-out • Often used at the end of a chapter • From Image to Black Color • Linear intensity change

  8. A Dissolve • Used to show that time has passed • Often used as a subchapter • From one Shot to another Shot • Linear intensity change

  9. Signals

  10. Human vs. Computer • Human: Knows what happens. • Computer: No cognitive understanding. Segmentation has to rely on features or signals.

  11. SAD • Sum of absolute differences • Substract each pixel by each pixel • Very easy approach SAD = -

  12. amount dark bright RGB-Histogram • Find and count all the different shades of red, green and blue and order them from dark to bright.

  13. Histogram Difference = • For red,green and blue: Substract the histograms bin by bin and sum up the difference. - 256 bins

  14. No cut No cut No cut CUT No cut No cut No cut 1 Frame Difference Result:

  15. cut cut cut cut cut cut cut cut How to find the cuts signal • Find Cuts with a threshold • Works on SAD and Histogram Difference frames

  16. cut cut cut cut cut cut cut cut cut Problems with Motion SAD: • SAD and Histogram are very sensitive to camera or object movement. signal frames

  17. cut cut cut cut cut cut cut cut cut cut cut cut cut cut cut cut Problems with Flash signal • SAD and Histogram are very sensitive to flash. frames

  18. Problems with dissolves & fades • So far we have no features that would indicate a fade-in, fade-out or a dissolve Improvment needed.

  19. Sliding Window

  20. No cut No cut No cut CUT No cut No cut No cut So far: 1 Frame Difference Result:

  21. cut cut cut cut cut cut cut No Cut CUT CUT CUT No cut No cut No cut Now: n - Frame difference Result:

  22. Motion & Flash signal signal • Not sensitive to flash anymore • Not sensitive to motion anymore frames frames

  23. fade Dissolves & Fades signal • Finally we are able to detect dissolves frames

  24. dissolve start dissolve end Problems with long dissolves signal • With this feature we miss the long and slow dissolves. frames

  25. Mean and Variance

  26. mean blue mean green mean red Mean • Mean is the arithmetic average of the histogram values. • When the histogram changes, the mean moves to left or right.

  27. Variance • Variance indicates how much the histogram values are spread around the mean. • When the histogram mean changes, the variance changes, too. vs small big

  28. Linear Mean Change in Dissolves signal Result: frames

  29. Parabolic Variance Change in Dissolves signal Result: frames

  30. Process of Detection • Finds slow dissolves • Finds fade-in / fade-out Search for candidates Approximate mean Approximate variance If small enough: Add disolve Calculate the error made

  31. Evaluation • ~ 250.000 frames of video material (ca. 3h)~ 1800 cuts, 90 dissolves / fades • Genres: Sport, Cartoons, News, Music, Commericals, Movies, Documentary • Focus on News ( ABC Lateline ) • 3 Categories: Match, Miss and False Positive

  32. Results

  33. Demo

  34. Questions?

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