Claims
- 1. A system for communicating multimedia information, comprising:
an optical carrier network configured to communicate multimedia information at a bitrate of at least 100 megabits per second; a plurality of optical network elements in the optical carrier network, wherein the plurality of optical network elements provide a low latency end-to-end connection; and a plurality of multimedia visualization centers, respectively coupled to the plurality of optical network elements, each multimedia visualization center comprising:
multimedia presentation equipment suitable for creating and presenting multimedia information; and a visualization interface element coupled to a respective optical network element, the visualization interface element comprising:
a transmitter element configured to encode multimedia information into SONET payload envelopes of a plurality of SONET frames for transmission in the optical carrier network, and a receiver element configured to decode multimedia information from the SONET payload envelopes into a form suitable for multimedia presentation.
- 2. The system of claim 1, wherein each multimedia visualization center comprises a display having a plurality of display sections.
- 3. The system of claim 1, wherein the optical carrier network comprises a plurality of fiber optic links, capable of transmitting and receiving SONET signals, and wherein the optical carrier network employs Dense Wavelength Division Multiplexing (DWDM).
- 4. The system of claim 1, wherein the optical carrier network comprises one of a mesh, ring and tree structure.
- 5. The system of claim 1, wherein each visualization interface element is configured to transmit and receive at least one of video signals, audio signals, Ethernet data and control signals in the SONET payload envelopes.
- 6. The system of claim 5, wherein the control signals comprise at least one of keyboard-generated control signals, mouse-generated control signals, and joystick-generated control signals.
- 7. The system of claim 1, wherein each visualization interface element is configured to output to the multimedia presentation equipment at least one of: (i) stereoscopic synchronized video signals, (ii) audio signals synchronized to the video signals, (iii) control data and (iv) Ethernet data.
- 8. The system of claim 1, wherein each visualization interface element is configured to utilize at least one of a pixel compression rate, an image color quality and a frame dropping option to optimize the multimedia information to be transmitted, based upon an available bandwidth of the optical carrier network.
- 9. The system of claim 1, wherein at least one of the plurality of optical network elements comprise optical cross-connect (OXC) switches.
- 10. The system of claim 1, wherein a visualization interface element is coupled to a respective optical network element using a fiber optic connection, and wherein the fiber optic connection between the visualization interface element and a respective optical network element uses a single mode fiber.
- 11. The system of claim 1, wherein the transmitter element adds coding information to each of the plurality of SONET frames, wherein the receiver element decodes the coding information, and wherein the coding information provides information relating to video resolution, refresh rate and blanking intervals in each of the plurality of SONET frames to synchronize pixel clocks between the transmitter element and the receiver element.
- 12. A visualization interface element adapted for use in an optical carrier network, comprising:
a transmitter structure configured to encode multimedia information into SONET payload envelopes for transmission in the optical carrier network; and a receiver structure configured to decode multimedia information from the SONET payload envelopes for multimedia presentation.
- 13. The visualization interface element of claim 12, wherein the transmitter structure is configured to transmit multimedia information at a bitrate of at least 100 megabits per second.
- 14. The visualization interface element of claim 12, wherein the receiver structure is configured to receive multimedia information at a bitrate of at least 100 megabits per second.
- 15. The visualization interface element of claim 12, wherein the multimedia information comprises at least one of video signals, audio signals, Ethernet data and control signals.
- 16. The visualization interface element of claim 12, comprising an output structure for outputting at least one of (i) stereoscopic synchronized video signals, (ii) audio signals synchronized to the video signals, (iii) control data and (iv) Ethernet data.
- 17. The visualization interface element of claim 12, further comprising an optimization structure, wherein the optimization structures utilizes at least one of a pixel compression rate, an image color quality and a frame dropping option to optimize the multimedia information to be transmitted, based upon an available bandwidth of the optical carrier network.
- 18. The visualization interface element of claim 12, wherein the visualization interface element is coupled to the optical carrier network via one of a plurality of optical network elements, wherein the visualization element is coupled to a respective optical network element using a fiber optic connection, and wherein the fiber optic connection between the visualization interface element and the respective optical network element uses a single mode fiber.
- 19. The visualization interface element of claim 18, wherein at least one of the optical network elements comprises an optical cross-connect (OXC) switch.
- 20. The visualization interface element of claim 12, wherein the transmitter structure adds coding information to a plurality of SONET frames, wherein the receiver structure decodes the coding information, and wherein the coding information provides information relating to video resolution, refresh rate and blanking intervals in each of the plurality of SONET frames to synchronize pixel clocks between the transmitter structure and the receiver structure.
- 21. A visualization interface element, adapted for use in an optical carrier network, that transmits and receives multimedia information at a bitrate of at least 100 megabits per second, comprising:
a receiver element configured to convert optical signals to electrical signals, to extract multimedia information from a framed SONET payload, and to send the extracted multimedia information to multimedia equipment; and a transmitter element configured to accept multimedia information from the multimedia equipment, to transfer the multimedia information to a framed SONET payload, and to convert the electrical signal to an optical signal for transmission over the optical carrier network.
- 22. The visualization interface element of claim 21, wherein the multimedia equipment comprises three projectors, each projector responding to a different input RGBHV video signal.
- 23. The visualization interface element of claim 21, wherein the visualization interface element is configured to utilize at least one of a pixel compression rate, an image color quality and a frame dropping option to optimize the multimedia information to be transmitted, based upon an available bandwidth of the optical carrier network.
- 24. The visualization interface element of claim 21, comprising an output structure for outputting at least one of (i) stereoscopic synchronized video signals, (ii) audio signals synchronized to the video signals, (iii) control data and (iv) Ethernet data.
- 25. The visualization interface element of claim 21, wherein the visualization interface element is coupled to the optical carrier network via one of a plurality of optical network elements, and wherein at least one of the plurality of optical network elements comprise optical cross-connect (OXC) switches.
- 26. The visualization interface element of claim 21, wherein the transmitter element adds coding information to each of a plurality of SONET frames, wherein the receiver element decodes the coding information, and wherein the coding information provides information relating to video resolution, refresh rate and blanking intervals in each of the plurality of SONET frames to synchronize pixel clocks between the transmitter element and the receiver element.
- 27. A method for communicating multimedia information, comprising the steps of:
encoding the multimedia information into SONET payload envelopes; transmitting the SONET payload envelopes over an optical carrier network at a bitrate of at least 100 megabits per second; receiving the SONET payload envelopes from the optical carrier network; decoding the multimedia information from the SONET payload envelopes into a form suitable for multimedia presentation; and presenting the decoded multimedia information using multimedia presentation equipment.
- 28. The method of claim 27, wherein the multimedia presentation equipment includes a display comprising a plurality of display sections.
- 29. The method of claim 27, wherein the optical carrier network comprises a plurality of fiber optic links capable of transmitting and receiving SONET signals, and wherein the optical carrier network employs Dense Wavelength Division Multiplexing (DWDM).
- 30. The method of claim 27, wherein the optical carrier network comprises one of a mesh, ring and tree structure.
- 31. The method of claim 27, wherein the multimedia information comprises at least one of video signals, audio signals, Ethernet data and control signals.
- 32. The method of claim 31, wherein the control signals comprise at least one of keyboard-generated control signals, mouse-generated control signals, and joystick-generated control signals.
- 33. The method of claim 27, wherein the step of presenting comprises the step of:
outputting to the multimedia presentation equipment at least one of: (i) stereoscopic synchronized video signals, (ii) audio signals synchronized to the video signals, (iii) control data and (iv) Ethernet data.
- 34. The method of claim 27, comprising the step of:
utilizing at least one of a pixel compression rate, an image color quality and a frame dropping option to optimize the multimedia information to be transmitted, based upon an available bandwidth of the optical carrier network.
- 35. A method for communicating multimedia information, comprising the steps of:
encoding the multimedia information into SONET payload envelopes of a plurality of SONET frames; encoding video format information into each of the plurality of SONET frames, wherein the video format information comprises resolution, refresh rate and blanking interval; transmitting the plurality of SONET frames over an optical carrier network at a bitrate of at least 100 megabits per second; receiving the plurality of SONET frames from the optical carrier network; decoding the multimedia information from the SONET payload envelopes of the plurality of SONET frames into a form suitable for multimedia presentation; decoding the video format information from each of the plurality of SONET frames; synchronizing a transmitter pixel clock and a receiver pixel clock using the coded and decoded video format information; and presenting the decoded multimedia information using multimedia presentation equipment.
Parent Case Info
[0001] This application claims priority under 35 U.S.C. §119 to U.S. Provisional Application No. 60/326,985, filed on Oct. 5, 2001, the entire content of which is hereby incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60326985 |
Oct 2001 |
US |