Claims
- 1. An image identification system comprising:(a) a multiplexed filter store for storing a plurality of filters derived from prior examination of a plurality of input image reference samples; (b) input imaging means for capturing an input image under examination; (c) a spectrum analyzer for producing spectral data representing the frequency spectrum of said input image under examination; (d) mapping means for producing a spectrum encoded map of said spectral data representing the frequency spectrum of said input image under examination; (e) first transform means for transforming said spectrum encoded map and directing the resulting transform at said multiplexed filter store; (f) second transform means for producing close match spectral correlation light beams emerging from said multiplexed filter store, each beam having an emerging angle with respect to said multiplexed filter store associated with that filter within said multiplexed filter store producing a close match with the resulting transform produced by said first transform means; and (g) detector means positioned in the path of said close match spectral correlation light beams for producing an identification map that is a function of the emerging angle of said close match spectral correlation light beams.
- 2. Apparatus of claim 1 wherein said detector means comprises an array of detectors and a display device coupled to said array of detectors for displaying images that indicate which detectors are being illuminated at any given time.
- 3. Apparatus of claim 2 wherein said detector means includes color coding means coupled to said array of detectors and to said display device for causing said display device to produce color coded images of said input image under examination.
- 4. Apparatus of claim 2 including raster scanning means coupled between said array of color coders and said display device.
- 5. Apparatus of claim 1 further including associated memory data input means for impressing data indicative of images of amplitude encoded characters with said spectrum encoded map produced by said mapping means, indicating the nature of materials of portions of objects producing said input images captured by said input imaging means.
- 6. Apparatus of claim 2 further including associated memory data input means for impressing data indicative of images of amplitude encoded characters with said spectrum encoded map produced by said mapping means, indicating the nature of materials of portions of objects producing said input images captured by said input imaging means.
- 7. Apparatus of claim 3 further including associated memory data input means for impressing data indicative of images of amplitude encoded characters with said spectrum encoded map produced by said mapping means, indicating the nature of materials of portions of objects producing said input images captured by said input imaging means.
- 8. Apparatus of claim 4 further including associated memory data input means for impressing data indicative of images of amplitude encoded characters with said spectrum encoded map produced by said mapping means, indicating the nature of materials of portions of objects producing said input images captured by said input imaging means.
- 9. Apparatus of claim 5 including retro-reflector means for retro-reflecting said close match spectral correlation light beams back through said multiplexed filter store, then through said first transform means and thereafter upon a camera, enabling said amplitude encoded characters to be displayed by a display device coupled to said camera.
- 10. Apparatus of claim 6 including retro-reflector means for retro-reflecting said close match spectral correlation light beams back through said multiplexed filter store, then through said first transform means and thereafter upon a camera, enabling said amplitude encoded characters to be displayed by a display device coupled to said camera.
- 11. Apparatus of claim 7 including retro-reflector means for retro-reflecting said close match spectral correlation light beams back through said multiplexed filter store, then through said first transform means and thereafter upon a camera, enabling said amplitude encoded characters to be displayed by a display device coupled to said camera.
- 12. Apparatus of claim 8 including retro-reflector means for retro-reflecting said close match spectral correlation light beams back through said multiplexed filter store, then through said first transform means and thereafter upon a camera, enabling said amplitude encoded characters to be displayed by a display device coupled to said camera.
- 13. Apparatus of claim 3 including raster scanning means coupled between said array of detectors and said display device.
- 14. An image identification system comprising:(a) a multiplexed holographic filter store for storing a plurality of filters derived from prior examination of a plurality of input image reference samples; (b) input imaging means for capturing an input image under examination; (c) a spectrum analyzer for producing spectral data representing the frequency spectrum of said input image under examination; (d) mapping means for producing a spectrum phase encoded map of said spectral data representing the frequency spectrum of said input image under examination; (f) first transform means for transforming said spectrum phase encoded map and directing the resulting transform at said multiplexed holographic filter store; (f) second transform means for producing close match spectral correlation light beams emerging from said multiplexed filter store, each beam having an emerging angle with respect to said multiplexed filter store associated with that filter within said multiplexed filter store producing a close match with the resulting transform produced by said first transform means; and (g) detector means positioned in the path of said close match spectral correlation light beams for producing an identification map that is a function of the emerging angle of said close match spectral correlation light beams.
- 15. Apparatus of claim 14 wherein said detector means comprises an array of detectors and a display device coupled to said array of detectors for displaying images that indicate which detectors are being illuminated at any given time.
- 16. Apparatus of claim 15 wherein said detector means includes color coding means coupled to said array of detectors and to said display device for causing said display device to produce color coded images of said input image under examination.
- 17. Apparatus of claim 15 including raster scanning means coupled between said array of detectors and said display device.
- 18. Apparatus of claim 14 further including associated memory data input means for impressing data indicative of images of amplitude encoded characters upon said spectrum phase encoded map produced by said mapping means, indicating the nature of materials of portions of objects producing said input images captured by said input imaging means.
- 19. Apparatus of claim 15 further including associated memory data input means for impressing data indicative of images of amplitude encoded characters upon said spectrum phase encoded ma map produced by said mapping means, indicating the nature of materials of portions of objects producing said input images captured by said input imaging means.
- 20. Apparatus of claim 16 further including associated memory data input means for impressing data indicative of images of amplitude encoded characters upon said spectrum phase encoded ma produced by said mapping means, indicating the nature of materials of portions of objects producing said input images captured by said input imaging means.
- 21. Apparatus of claim 17 further including associated memory data input means for impressing data indicative of images of amplitude encoded characters upon said spectrum phase encoded ma produced by said mapping means, indicating the nature of materials of portions of objects producing said input images captured by said input imaging means.
- 22. Apparatus of claim 18 including retro-reflector means for retro-reflecting said close match spectral correlation light beams back through said multiplexed filter store, then through said first transform means and thereafter upon a camera insensitive to light beam phase, enabling said amplitude encoded characters to be displayed by a display device coupled to said camera.
- 23. Apparatus of claim 19 including retro-reflector means for retro-reflecting said close match spectral correlation light beams back through said multiplexed filter store, then through said first transform means and thereafter upon a camera, enabling said amplitude encoded characters to be displayed by a display device coupled to said camera.
- 24. Apparatus of claim 20 including retro-reflector means for retro-reflecting said close match spectral correlation light beams back through said multiplexed filter store, then through said first transform means and thereafter upon a camera, enabling said amplitude encoded characters to be displayed by a display device coupled to said camera.
- 25. Apparatus of claim 21 including retro-reflector means for retro-reflecting said close match spectral correlation light beams back through said multiplexed filter store, then through said first transform means and thereafter upon a camera, enabling said amplitude encoded characters to be displayed by a display device coupled to said camera.
- 26. Apparatus of claim 16 including raster scanning means coupled between said array of detectors and said display device.
- 27. An image identification system comprising:(a) a multiplexed filter store for storing a plurality of filters derived from prior examination of a plurality of input image reference samples; (b) input imaging means for capturing an input image under examination; (c) a spectrum analyzer for producing spectral data representing the frequency spectrum of said input image under examination; (d) mapping means for producing a spectrum encoded map of said spectral data representing the frequency spectrum of said input image under examination; (e) first transform means for transforming said spectrum encoded map and directing the resulting transform at said multiplexed filter store; (f) second transform means for producing close match spectral correlation light beams emerging from said multiplexed filter store, each beam having particular beam characteristics with respect to said multiplexed filter store associated with that filter within said multiplexed filter store producing a close match with the resulting transform produced by said first transform means; and (g) detector means positioned in the path of said close match spectral correlation light beams for producing an identification map that is a function of the beam characteristics of said close match spectral correlation light beams.
- 28. Apparatus of claim 27 wherein said spectrum encoded map is pure phase encoded.
- 29. Apparatus of claim 27 wherein said multiplexed filter store is a holographic multiplexed filter store.
- 30. Apparatus of claim 28 wherein said multiplexed filter store is a holographic multiplexed filter store.
CROSS REFERENCE TO RELATED APPLICATIONS
This application claims the benefit of provisional application Ser. No. 60/239,833, filed Oct. 12, 2000.
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Provisional Applications (1)
|
Number |
Date |
Country |
|
60/239833 |
Oct 2000 |
US |