System and method for inputting contours of a three-dimensional subject to a computer
At least one two-dimensional infrared grid is projected onto a three-dimensional subject in order to determine or represent contours of the subject based on distortion of the grid. The grid is separated from a composite visible-infrared image by a beam splitter. If two grids are superposed for a stereoscopic effect, the two grids preferably have different infrared wavelengths and are separable by a second beam splitter.
1 . A system for capturing contours of a three-dimensional subject for display or processing by an electronic device, comprising:
a projector arranged to project a grid consisting of mutually perpendicular lines onto the subject; and
an image separation device arranged to separate an image of said projected grid from a superposed image of said subject,
wherein said a frequency of light forming said grid is different from a frequency of light captured in said superposed image of said subject, and
wherein said image separation device includes:
a filter device arranged to optically separate said image of said projected grid from said superposed image of said subject based on said different frequencies; and
at least two image detectors, one of which is positioned to receive said optically separated image of said projected grid and the other of which is positioned to receive said image of said subject.
2 . A system as claimed in claim 1 , wherein said grid is an infrared grid.
3 . A system as claimed in claim 2 , wherein said image of said subject is a visible light image of said subject.
4 . A system as claimed in claim 1 , wherein said image of said subject is a visible light image of said subject.
5 . A system as claimed in claim 1 , further comprising a second projector, said second projector being arranged to project light onto said subject from a different angle than said first projector, and said second projector being arranged to transmit light having a different frequency than said light transmitted by said first projector.
6 . A system as claimed in claim 5 , wherein said first and second grids are infrared grids of different frequency.
7 . A system as claimed in claim 5 , wherein said image of said subject is a visible light image of said subject.
8 . A system as claimed in claim 5 , wherein said filter device includes a pair of beam splitters, one of which is arranged to separate said visible light image from an image of said two infrared grids, and a second of which is arranged to separate a combined image of said two infrared grids into separate images of said two infrared grids.
9 . A system as claimed in claim 1 , wherein said filter device is a beam splitter.
10 . A system as claimed in claim 1 , wherein said grid is a two-dimensional grid projected onto a three-dimensional subject in order to determine contours of the subject based on distortion of the grid.
11 . A system as claimed in claim 1 , comprising a second said projector, at least one of said projectors having an adjustable orientation such that alignment of grids projected by said projectors on said subject enables a distance to said subject to be determined.
12 . A system for capturing contours of a three-dimensional subject for processing by an electronic image processor, comprising:
a projector arranged to project an infrared grid consisting of static mutually perpendicular lines onto the subject; and
a lamp arranged to illuminate said subject in a generally uniform manner to form an image of said subject,
wherein a frequency of light forming said grid is different from a frequency of light used to illuminate said superposed image of said subject in a generally uniform manner.
13 . A system as claimed in claim 12 , wherein said image of said subject is a visible light image of said subject.
14 . A system as claimed in claim 12 , further comprising a second projector, said second projector being arranged to project light onto said subject from a different angle than said first projector, and said second projector being arranged to transmit light having a different frequency than said light transmitted by said first projector.
15 . A system as claimed in claim 14 , further comprising means for adjusting said different angle such that when grids projected by said projectors onto said subject coincide, a distance to said subject is determined.
16 . A system as claimed in claim 15 , wherein said first and second grids are infrared grids of different frequency.
17 . A system as claimed in claim 16 , wherein said image of said subject is a visible light image of said subject.
18 . A system for capturing contours of a three-dimensional subject for processing by an electronic image processor, comprising
a filter device arranged to optically separate an image of a grid that has been projected onto the subject from a superposed image of said subject, one of said images being an infrared image and the other a visible light image, said filter device including two image detectors, one of which is positioned to receive said optically separated image of said projected grid the other of which is positioned to receive image of said subject.
19 . A system as claimed in claim 18 , wherein said filter device includes a pair of beam splitters, one of which is arranged to separate said visible light image from an image of said two infrared grids, and a second of which is arranged to separate a combined image of said two infrared grids into separate images of said two infrared grids.
20 . A method of capturing contours of a three-dimensional subject for processing by an electronic image processor, comprising:
projecting a grid consisting of mutually perpendicular lines onto the subject; and
optically separating an image of said projected grid from a superposed image of said subject,
wherein a frequency of light forming said grid is different from a frequency of light captured in said superposed image of said subject.
21 . A method as claimed in claim 20 , wherein said grid is an infrared grid.
22 . A method as claimed in claim 21 , wherein said image of said subject is a visible light image of said subject.
23 . A method as claimed in claim 20 , wherein said image of said subject is a visible light image of said subject.
24 . A method as claimed in claim 20 , further comprising the step of projecting a second grid onto said subject, said second grid having a different frequency than said light transmitted by said first projector.
25 . A method as claimed in claim 24 , wherein said first and second grids are infrared grids of different frequency.
26 . A method as claimed in claim 24 , wherein said image of said subject is a visible light image of said subject.
27 . A method as claimed in claim 18 , further comprising the steps of projecting a second grid onto the subject, causing said second grid to coincide with said first grid, and determining a distance to the subject based on an angle of adjustment required to cause said first and second grids to coincide.
28 . A system for targeting or finding the distance to a subject, comprising:
a pair of projectors arranged to project a pattern onto the subject; and
an image separation device arranged to separate respective images of said projected patterns from a superposed image of said patterns and said subject,
wherein frequencies of light forming respective said patterns is different from a frequency of light captured in said superposed image of said subject,
wherein said frequencies of light forming said respective said patterns are different from each other, and
wherein said image separation device includes:
a filter device arranged to optically separate said images of said projected patterns from said superposed image of said patterns and said subject based on said different frequencies; and
a filter device arranged to optically separate said images of said projected patterns from each other based on said different frequencies.