IP Library Granted Patent US 8,730,129
Granted Patent B2
US 8,730,129 · App. 12/456,401 · Granted May 20, 2014

Advanced immersive visual display system

Inventor: Dennis J Solomon (Yarmouth Port, MA)
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Quick Facts
Patent No.
US 8,730,129
App. No.
12/456,401
Granted
May 20, 2014
Kind
B2
Abstract

The present invention discloses an improved method and device for the immersive display of three-dimensional images with visual accommodation. An improved method for manufacturing a visual display incorporating a scanned light source and an improved method of presenting visual information are disclosed. A complete, immersive display environment is also presented.

Claims (27)

1. A visual display system having pixel-specific, visual accommodation comprising:

light-emitting element array means for projecting one or more parts of a full image wherein the surface of said array is not optically orthogonal with the principal optical z-axis of the visual display system and wherein each pixel of said array is positioned at a fixed optical focal distance from the observer;

optical scanning means for displacing the optical radiation from said light emitting elements array means across the x-y plane of the field of view;

optical screen means for projecting the optical radiation from the light emitting elements means toward the observer's eye preserving the optical focal distance of said light emitting elements;

computational means for calculating, controlling and synchronizing the illumination of said light emitting element array with said optical scanning means and said optical screen means to project to create a full image with pixel-specific visual accommodation to the observer.

2. A visual display system in accordance with claim 1 wherein said optical screen means is at least partially transparent during the visual-integration period enabling the observer to view the ambient environment.

3. A visual display system in accordance with claim 1 wherein at least one optical component conforms the observer's depth of focus of said light-emitting array to an extended range within the limits of human vision from infinity to macroscopic.

4. A visual display system in accordance with claim 1 wherein the optical radiation from said light-emitting array is projected to the observer's eye by total internal reflection optics.

5. A visual display system in accordance with claim 1 wherein said optical screen means interposes binocular images having an intersecting eye-related convergence points.

6. A visual display system in accordance with claim 1 wherein said light-emitting array means includes an at least partially transparent light-emitting medium having means to activate a defined region of said medium.

7. A visual display system in accordance with claim 1 further comprising at least one eye state and position monitoring means providing said controller means data including intraocular distance, eye lens aberrations, focus, direction and iris dilation to conform the modulation of said light array means and display means to the observer's eye state for optimum performance.

8. A visual display system in accordance with claim 7 wherein said eye monitoring means is integrated into the same optical path as said light-emitting element means.

9. A visual display system in accordance with claim 1 , wherein said optical screen means is comprised of at least one thin-film optical conduit means which retains the defined optical focal distance in at least one-dimension.

10. A visual display system in accordance with claim 9 , wherein said optical conduit means is integrated with an extraction-activation means enabling the radiation transmitted through said conduit means to exit said conduit means at a defined position and with a defined angular distribution and wavelength.

11. A visual display system with varying pixel-specific visual accommodation in accordance with claim 10 wherein said extraction-activation means incorporates a means to temporarily alter the refractive index of said thin-film waveguide.

12. A visual display system with varying pixel-specific visual accommodation in accordance with claim 10 wherein said extraction-activation means incorporates a means to temporarily alter the reflectivity of one surface of said thin-film waveguide.

13. A visual display system in accordance with claim 1 , wherein said optical screen means is comprised of at least one total internal reflection optical conduit means which retains the defined optical focal distance in at least one-dimension.

14. A visual display system in accordance with claim 1 , further comprising at least one sensor means to register, monitor and correct the registration and performance of the visual system.

15. A visual display system in accordance with claim 14 , wherein said sensor means is a digital camera.

16. A visual display system in accordance with claim 1 , further comprising a transparent light-emitting volume having the width of one exit aperture of the x-y axes a single pixel wherein the position and illumination of pixels within said transparent volume is activated by the external application of directed energy.

17. A visual display system with varying pixel-specific visual accommodation further comprising:

at least one linear array of at least two light-emitting elements;

at least one array element, optical focal length varying means for each light-emitting element;

an array optical scanning means in a direction perpendicular to the axis of said linear array means, and

at least one thin-film, optical waveguide screen means wherein the optical radiation output from said light-emitting element array means maintains the proscribed optical focal length from the focal length varying means to the observer's eye in at least one dimension.

18. A visual display system in accordance with claim 17 wherein said optical conduit means is integrated with an extraction-activation means enabling the radiation transmitted through said conduit means to exit said conduit means at a defined position and with a defined angular distribution and wavelength.

19. A visual display system with varying pixel-specific visual accommodation in accordance with claim 18 wherein said extraction-activation means incorporates a means to temporarily alter the refractive index of said thin-film waveguide.

Priority Claims (1)
FR 9015462 · Dec 7, 1990 · national
Continuity (11)
Continuation In Part 11149638 · Jun 9, 2005
Continuation In Part 10307620 · Dec 2, 2002
Continuation In Part 10941461 · Sep 15, 2004
Continuation In Part 10172629 · Jun 14, 2002
Continuation In Part 09706260 · Nov 3, 2000
Continuation In Part 08074398 · Jun 10, 1993
Continuation In Part 09706260 · Nov 3, 2000
Continuation In Part 08074398 · Jun 10, 1993
Continuation In Part 07799066 · Nov 27, 1991
Provisional Application 60584351 · Jun 30, 2004
Related Publication 20110007277A1 · Jan 13, 2011