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ECE 549CS 543: COMPUTER VISON LECTURE 16

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ECE 549/CS 543: COMPUTER VISON LECTURE 16. STEREO I. The Trifocal Tensor (Recap) The Quadrifocal Tensor (Recap) Stereo Reconstruction. The Stereo Fusion Problem ... – PowerPoint PPT presentation

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Title: ECE 549CS 543: COMPUTER VISON LECTURE 16


1
ECE 549/CS 543 COMPUTER VISON LECTURE
16 STEREO I
  • The Trifocal Tensor (Recap)
  • The Quadrifocal Tensor (Recap)
  • Stereo Reconstruction
  • The Stereo Fusion Problem
  • Reading Chapters 10 and 11
  • A list of potential projects is at
  • http//www-cvr.ai.uiuc.edu/ponce/fall04/project
    s.pdf
  • Homework Weak Calibration due Th. Oct. 21.
  • http//www-cvr.ai.uiuc.edu/ponce/fall04/hw3/hw3
    .pdf


2
Trinocular Epipolar Constraints
These constraints are not independent!
3
Trinocular Epipolar Constraints Transfer
Given p and p , p can be computed as the
solution of linear equations.
1
2
3
4
Trifocal Constraints
5
Trifocal Constraints
Calibrated Case
All 3x3 minors must be zero!
Trifocal Tensor
6
Trifocal Constraints
Uncalibrated Case
Trifocal Tensor
7
Trifocal Constraints 3 Points
Pick any two lines l and l through p and p .
2
3
2
3
Do it again.
8
Properties of the Trifocal Tensor
i
1
Estimating the Trifocal Tensor
  • Ignore the non-linear constraints and use linear
    least-squares
  • a posteriori.
  • Impose the constraints a posteriori.

9
The backprojections of the two lines do not
define a line!
10
Multiple Views (Faugeras and Mourrain, 1995)
11
Two Views
Epipolar Constraint
12
Three Views
Trifocal Constraint
13
Four Views
Quadrifocal Constraint (Triggs, 1995)
14
Geometrically, the four rays must intersect in P..
15
Quadrifocal Tensor and Lines
16
Scale-Restraint Condition from Photogrammetry
17
Stereopsis
Figure from US Navy Manual of Basic Optics and
Optical Instruments, prepared by Bureau of Naval
Personnel. Reprinted by Dover Publications, Inc.,
1969.
18
Reconstruction
  • Linear Method
  • find P such that
  • Non-Linear Method find Q minimizing

19
Rectification
All epipolar lines are parallel in the rectified
image plane.
20
Reconstruction from Rectified Images
Disparity du-u.
Depth z -B/d.
21
Stereopsis
Figure from US Navy Manual of Basic Optics and
Optical Instruments, prepared by Bureau of Naval
Personnel. Reprinted by Dover Publications, Inc.,
1969.
22
Human Stereopsis Reconstruction
d0
Disparity d r-l D-F.
dlt0
In 3D, the horopter.
23
Human Stereopsis Reconstruction
What if F is not known?
  • Helmoltz (1909)
  • There is evidence showing the vergence angles
  • cannot be measured precisely.
  • Humans get fooled by bas-relief sculptures.
  • There is an analytical explanation for this.
  • Relative depth can be judged accurately.

24
(Binocular) Fusion
25
Human Stereopsis Binocular Fusion
How are the correspondences established?
  • Julesz (1971) Is the mechanism for binocular
    fusion
  • a monocular process or a binocular one??
  • There is anecdotal evidence for the latter
    (camouflage).
  • Random dot stereograms provide an objective
    answer

BP!
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