Claims
- 1. A visual conference station adapted to rest on a flat surface, the visual conference station including a panoramic imaging system for recording light received from a panoramic region surrounding the visual conference station, wherein the panoramic imaging system comprises:
a panoramic lens having an optical axis aligned perpendicular to the flat surface; and an image sensor located below the panoramic lens and adapted to capture panoramic image data received from the panoramic lens.
- 2. The visual conference station according to claim 1, wherein the panoramic lens comprises:
a convex aspheric surface symmetrical about the optical axis, the convex aspheric surface comprising a first transmissive portion surrounding a first internally reflective portion; and a concave aspheric surface symmetrical about the optical axis, the concave aspheric surface comprising a second internally reflective portion surrounding a second transmissive portion.
- 3. The visual conference station of claim 2,
wherein the second internally reflective portion is adapted to reflect light received through the first transmissive portion to the first internally reflective portion, and wherein the first internally reflective portion is adapted to reflect light received through the second internally reflective portion to the second transmissive portion.
- 4. The visual conference station of claim 2, wherein the panoramic imaging system further comprises a secondary set of optical elements aligned along the optical axis and adapted to provide an optical path between the image sensor and the panoramic lens.
- 5. The visual conference station of claim 4, wherein the secondary set of optical elements comprises at least one of a image flattening lens, a scaling lens, a color correcting lens set, and an infrared filter.
- 6. The visual conference station according to claim 1, wherein the panoramic lens is adapted to generate an anamorphic annular image onto the image sensor.
- 7. The visual conference station according to claim 6, further comprising means for processing anamorphic annular image data captured by the image sensor, and for producing panoramic image data adapted to generate a rectangular panoramic image on a display device.
- 8. The visual conference station according to claim 1, further comprising a plurality of microphones for capturing audio signals.
- 9. The visual conference station according to claim 8, further comprising means for automatically identifying a location of an object by comparing a plurality of audio signals captured by the plurality of microphones in response to sound emitted from the object, and triangulating the location based on relative signal strengths of the audio signals.
- 10. The visual conference station according to claim 1, further comprising processing means for transmitting the panoramic image data captured by the panoramic imaging system onto a communication network, and for receiving second panoramic image data from an external source.
- 11. The visual conference station according to claim 10, further comprising a visual display device for displaying said second panoramic image data.
- 12. The visual conference station according to claim 11, wherein said visual display device comprises a touchscreen device adapted to receive commands from a user, and to transmit the commands to the processing means.
- 13. The visual conference station according to claim 12, wherein the visual display device comprises means for isolating and enhancing a selected region of the panoramic image data.
- 14. The visual conference station according to claim 13, wherein said means for isolating and enhancing the selected region of the panoramic image data comprising at least one of a means for compensating the image data associated with the selected region for a selected zoom parameter, means for compensating the image data associated with the selected region for a selected tilt angle, and means for performing Keystone correction on the image data associated with the selected region.
- 15. A visual conference station comprising:
a housing adapted to rest on a flat surface, the housing including a base and a central post extending upward from the base; a panoramic lens mounted on an upper end of the central post; and an image sensor mounted inside of the central post below the panoramic lens, wherein the panoramic lens is adapted to receive light from a panoramic region surrounding the visual conference station, and to direct the received light in an annular pattern onto the image sensor.
- 16. The visual conference station according to claim 15, wherein the central post is constructed such that the panoramic lens is maintained a distance in the range of four to 16 inches above the flat surface.
- 17. The visual conference station according to claim 16, wherein the panoramic lens is maintained a distance in the range of eight to 12 inches above the flat surface.
- 18. The visual conference station according to claim 17, wherein the panoramic lens defines an optical axis aligned perpendicular to the flat surface, and wherein the panoramic lens comprises:
a convex aspheric surface symmetrical about the optical axis, the convex aspheric surface comprising a first transmissive portion surrounding a first internally reflective portion; and a concave aspheric surface symmetrical about the optical axis, the concave aspheric surface comprising a second internally reflective portion surrounding a second transmissive portion.
- 19. The visual conference station of claim 18,
wherein the second internally reflective portion is adapted to reflect light received through the first transmissive portion to the first internally reflective portion, and wherein the first internally reflective portion is adapted to reflect light received through the second internally reflective portion to the second transmissive portion.
- 20. The visual conference station according to claim 19, further comprising a secondary set of optical elements aligned along the optical axis and adapted to provide an optical path between the image sensor and the panoramic lens.
- 21. The visual conference station of claim 20, wherein the secondary set of optical elements comprises at least one of a image flattening lens, a scaling lens, a color correcting lens set, and an infrared filter.
- 22. The visual conference station according to claim 15, wherein the panoramic lens is adapted to generate an anamorphic annular image onto the image sensor.
- 23. The visual conference station according to claim 22, further comprising means for processing anamorphic annular image data captured by the image sensor, and for producing panoramic image data adapted to generate a rectangular panoramic image on a display device.
- 24. The visual conference station according to claim 15,
wherein the housing further comprises a plurality of foot portions extending radially outward from the base, and wherein the visual conference station further comprises a plurality of microphones for capturing audio signals, each of the plurality of microphones being located adjacent to an end of a corresponding foot portion.
- 25. The visual conference station according to claim 24, further comprising means for automatically identifying a location of an object by comparing a plurality of audio signals captured by the plurality of microphones in response to sound emitted from the object, and triangulating the location based on relative signal strengths of the audio signals.
- 26. The visual conference station according to claim 15, further comprising:
processing means for converting annular image data captured by the image sensor into panoramic image data and for compressing the panoramic image data; transmission means for transmitting the compressed panoramic image data onto a communication network; and receiving means for receiving second panoramic image data from an external source, wherein the processing means further comprises means for decompressing said second panoramic image data.
- 27. The visual conference station according to claim 26, further comprising a visual display device for displaying said second panoramic image data.
- 28. The visual conference station according to claim 27, wherein said visual display device comprises a touchscreen device adapted to receive commands from a user, and to transmit the commands to the processing means.
- 29. The visual conference station according to claim 28, wherein the visual display device comprises means for isolating and enhancing a selected region of the panoramic image data.
- 30. The visual conference station according to claim 29, wherein said means for isolating and enhancing the selected region of the panoramic image data comprising at least one of a means for compensating the image data associated with the selected region for a selected zoom parameter, means for compensating the image data associated with the selected region for a selected tilt angle, and means for performing Keystone correction on the image data associated with the-selected region.
- 31. A visual conference station comprising:
a panoramic imaging system for reflecting light received from a panoramic region surrounding the visual conference station onto an image sensor such that the reflected light is projected in an annular pattern onto the image sensor; processing means for converting annular image data captured by the image sensor into panoramic image data adapted to generate a rectangular panoramic image on a display device; and means for transmitting the panoramic image data onto a communication network.
- 32. The visual conference station according to claim 31, wherein the panoramic imaging system includes a panoramic lens defining an optical axis aligned perpendicular to the flat surface, and wherein the panoramic lens comprises:
a convex aspheric surface symmetrical about the optical axis, the convex aspheric surface comprising a first transmissive portion surrounding a first internally reflective portion; and a concave aspheric surface symmetrical about the optical axis, the concave aspheric surface comprising a second internally reflective portion surrounding a second transmissive portion.
- 33. The visual conference station of claim 32,
wherein the second internally reflective portion is adapted to reflect light received through the first transmissive portion to the first internally reflective portion, and wherein the first internally reflective portion is adapted to reflect light received through the second internally reflective portion to the second transmissive portion.
- 34. The visual conference station of claim 32, wherein the panoramic imaging system further comprises a secondary set of optical elements aligned along the optical axis and adapted to provide an optical path between the image sensor and the panoramic lens.
- 35. The visual conference station of claim 34, wherein the secondary set of optical elements comprises at least one of a image flattening lens, a scaling lens, a color correcting lens set, and an infrared filter.
- 36. The visual conference station according to claim 31, wherein the panoramic lens is adapted to generate an anamorphic annular image onto the image sensor.
- 37. The visual conference station according to claim 36, further comprising means for processing anamorphic annular image data captured by the image sensor, and for producing panoramic image data adapted to generate a rectangular panoramic image on a display device.
- 38. The visual conference station according to claim 31, further comprising a plurality of microphones for capturing audio signals.
- 39. The visual conference station according to claim 38, further comprising means for automatically identifying a location of an object by comparing a plurality of audio signals captured by the plurality of microphones in response to sound emitted from the object, and triangulating the location based on relative signal strengths of the audio signals.
- 40. The visual conference station according to claim 31, further means for receiving second panoramic image data from an external source.
- 41. The visual conference station according to claim 40, further comprising a visual display device for displaying said second panoramic image data.
- 42. The visual conference station according to claim 41, wherein said visual display device comprises a touchscreen device adapted to receive commands from a user, and to transmit the commands to the processing means.
- 43. The visual conference station according to claim 42, wherein the visual display device comprises means for isolating and enhancing a selected region of the panoramic image data.
- 44. The visual conference station according to claim 43, wherein said means for isolating and enhancing the selected region of the panoramic image data comprising at least one of a means for compensating the image data associated with the selected region for a selected zoom parameter, means for compensating the image data associated with the selected region for a selected tilt angle, and means for performing Keystone correction on the image data associated with the selected region.
RELATED APPLICATIONS
[0001] The present application is a Continuation-In-Part of and claims the benefit of U.S. Utility patent application Ser. No. 10/336,244 by Edward C. Driscoll, Jr. and John L. W. Furlan, filed Jan. 3, 2003, and is incorporated herein in its entirety by reference.
[0002] The present application also claims the benefit of U.S. Provisional Patent Application serial No. 60/352,779 by Edward C. Driscoll, Jr. and John L. W. Furlan, filed Jan. 28, 2002, and is incorporated herein in its entirety by reference.
Provisional Applications (1)
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Number |
Date |
Country |
|
60352779 |
Jan 2002 |
US |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
10336244 |
Jan 2003 |
US |
Child |
10462217 |
Jun 2003 |
US |