SIGHT INFORMATION COLLECTION IN HEAD WORN COMPUTING
Aspects of the present invention relate to methods and systems for collecting and using eye heading and sight heading information in head worn computing.
1 . A method, comprising:
a. Capturing, from a camera in a head-worn computer, an image of a person in an environment;
b. Processing the image to determine a sight heading of the person in the environment by estimating a relative sight heading of the person and referencing the relative sight heading to a compass heading of the head-worn computer;
c. Estimating a geospatial location for the person in the environment based on the geospatial position of the head-worn computer; and
d. Establishing an object sight line that originates at the estimated geospatial location for the person in the environment and intersects with an object in the environment.
2 . A method, comprising:
a. Capturing, from a camera in a head-worn computer, an image series of a person in an environment;
b. Processing the image series to determine a series of sight headings of the person in the environment by estimating, at each portion in the series, a relative sight heading of the person and referencing the relative sight heading to a compass heading of the head-worn computer;
c. Estimating a geospatial location at each portion in the series for the person in the environment based on the geospatial position of the head-worn computer; and
d. Establishing a series of object sight lines that originates at the corresponding estimated geospatial locations for the person in the environment and intersects with an object in the environment to generate a persistence statistic.
3 . A method, comprising:
a. Capturing, from a camera in a head-worn computer, an image series of a person at a location in an environment;
b. Processing the image series to determine a series of sight headings of the person in the environment by estimating a series of relative sight headings of the person and referencing the series of relative sight headings to a compass heading of the head-worn computer;
c. Estimating a geospatial location for the person in the environment based on the geospatial position of the head-worn computer; and
d. Establishing a series of object sight lines that originate at the estimated geospatial location for the person in the environment and intersects with an object in the environment to generate a persistence statistic.
4 . (canceled)