IP Library Granted Patent US 7,050,624
Granted Patent B2
US 7,050,624 · App. 09/915,204 · Granted May 23, 2006

System and method for feature location and tracking in multiple dimensions including depth

Assignee: Nevengineering, Inc.
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Quick Facts
Patent No.
US 7,050,624
App. No.
09/915,204
Granted
May 23, 2006
Kind
B2
Abstract

The present invention is directed to a method and related system for determining a feature location in multiple dimensions including depth. The method includes providing left and right camera images of the feature and locating the feature in the left camera image and in the right camera image using bunch graph matching. The feature location is determined in multiple dimensions including depth based on the feature locations in the left camera image and the right camera image.

Claims (40)

1. A method for determining a feature location, comprising:

providing left and right camera images of the feature;

locating the feature in the left camera image and in the right camera image using bunch graph matching, wherein the feature is an eye of a person's face; and

determining the feature location in multiple dimensions including depth based on the feature locations in the left camera image and the right camera image.

2. A method for determining a feature location, comprising:

providing left and right camera images of the feature;

locating the feature in the left camera image and in the right camera image using image analysis based on wavelet component values generated from wavelet transformations of the camera images, wherein the feature is an eye of a person's face; and

determining the feature location in multiple dimensions including depth based on the feature locations in the left camera image and the right camera image.

3. A method for determining a feature location as defined in claim 2 , wherein the wavelet transformations use Gabor wavelets.

4. Apparatus for determining a feature location, comprising:

means for providing left and right camera images of the feature;

means for locating the feature in the left camera image and in the right camera image using image analysis based on wavelet component values generated from wavelet transformations of the camera images, wherein the feature is an eye of a person's face; and

means for determining the feature location in multiple dimensions including depth based on the feature locations in the left camera image and the right camera image.

5. Apparatus for determining a feature location as defined in claim 4 , wherein the wavelet transformations use Gabor wavelets.

6. A method for determining a feature location, comprising:

providing first and second spaced-apart camera images of the feature;

locating the feature in the first camera image using image analysis based on wavelet component values generated from wavelet transformations of the first camera image, wherein the feature is an eye of a person's face; and locating the feature in the second camera image using image analysis based on wavelet component values generated from wavelet transformations of the second camera image; and

determining the feature location in multiple dimensions including depth based on the feature location in the first camera image and the feature location in the second camera image.

7. A method for determining a feature location as defined in claim 6 , wherein the wavelet transformations use Gabor wavelets.

8. Apparatus for determining a feature location, comprising:

means for providing left and right camera images of the feature;

means for locating the feature in the left camera image and in the right camera image using bunch graph matching, wherein the feature is an eye of a person's face; and

means for determining the feature location in multiple dimensions including depth based on the feature locations in the left camera image and the right camera image.

9. Apparatus for determining a feature location, comprising:

means for providing first and second spaced-apart camera images of the feature;

means for locating the feature in the first camera image using image analysis based on wavelet component values generated from wavelet transformations of the first camera image, and locating the feature in the second camera image using image analysis based on wavelet component values generated from wavelet transformations of the second camera image, wherein the feature is an eye of a person's face; and

means for determining the feature location in multiple dimensions including depth based on the feature location in the first camera image and the feature location in the second camera image.

10. Apparatus for determining a feature location as defined in claim 9 , wherein the wavelet transformations use Gabor wavelets.

11. A method for real-time determination of the location of a person's eyes in three-dimensions for auto-stereoscopic imaging, comprising:

providing left and right spaced-apart camera images of a person's face, the person's face including a left eye and a right eye;

locating the left eye and the right eye in the left camera image using image analysis based on wavelet component values generated from wavelet transformations of the left camera image, and locating the left eye and the right eye in the right camera image using image analysis based on wavelet component values generated from wavelet transformations of the right camera image; and

determining the feature locations of the left eye and the right eye in three dimensions based on the left and right eye locations in the left camera image and the left and right eye locations in the right camera image.

12. A method for real-time determination of the location of a person's eyes in three-dimensions for auto-stereoscopic imaging as defined in claim 11 , wherein the wavelet transformations use Gabor wavelets.

13. A method for real-time determination of the location of a person's eyes in three-dimensions for auto-stereoscopic imaging as defined in claim 12 , wherein the image analysis comprises bunch graph matching.

14. Apparatus for real-time determination of the location of a person's eyes in three-dimensions for auto-stereoscopic imaging, comprising:

means for providing left and right spaced-apart camera images of a person's face, the person's face including a left eye and a right eye;

means for locating the left eye and the right eye in the left camera image using image analysis based on wavelet component values generated from wavelet transformations of the left camera image, and locating the left eye and the right eye in the right camera image using image analysis based on wavelet component values generated from wavelet transformations of the right camera image; and

means for determining the feature locations of the left eye and the right eye in three dimensions based on the left and right eye locations in the left camera image and the left and right eye locations in the right camera image.

15. Apparatus for real-time determination of the location of a person's eyes in three-dimensions for auto-stereoscopic imaging as defined in claim 14 , wherein the wavelet transformations use Gabor wavelets.

16. Apparatus for real-time determination of the location of a person's eyes in three-dimensions for auto-stereoscopic imaging as defined in claim 15 , wherein the image analysis comprises bunch graph matching.

Assignments (5)
CHANGE OF NAME Recorded Oct 5, 2017
From: GOOGLE INC.
To: GOOGLE LLC
Reel/Frame 044127/0735 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 13, 2006
From: NEVENGINEERING, INC.
To: GOOGLE INC.
Reel/Frame 018616/0814 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 7, 2006
From: DIALAMEH, ORANG; NEVEN, HARTMUT
To: EYEMATIC INTERFACES, INC.
Reel/Frame 017892/0825 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 1, 2004
From: EYEMATIC INTERFACES, INC.
To: NEVENGINEERING, INC.
Reel/Frame 015015/0622 →
SECURITY INTEREST Recorded Oct 9, 2003
From: NEVENGINEERING, INC.
To: EYEMATIC INTERFACES, INC.
Reel/Frame 014572/0440 →
Continuity (3)
Continuation In Part 0920619500 · Dec 4, 1998
Provisional Application 6022030900 · Jul 24, 2000
Related Publication 20020031253A1 · Mar 14, 2002