Claims
- 1. An opto-electronic video compression system, comprising:
a lens element for transmitting light of an image and having one or more lenses, each lens having a predetermined focal length; a sensor array including a first sensor for receiving focused light from the lens element and a second sensor for receiving defocused light from the lens element, wherein the first sensor includes X×Y pixels and samples the focused light at each of the X×Y pixels, and the second sensor includes X/2×Y/2 pixels and samples the defocused light at each of the X/2×Y/2 pixels; and an electronic differencing element in communication with the first and second sensor for differencing the coefficients of co-located pixels.
- 2. The opto-electronic video compression system of claim 1, wherein the lens element includes a single lens, and further including a beam splitter between the lens element and the sensor array for transmitting a first percentage of the light from the image to the first sensor and a second percentage of the light from the image to the second sensor.
- 3. The opto-electronic video compression system of claim 1, wherein the lens element includes a single collimated lens, further including a beam splitter between the lens element and the sensor array for transmitting a first percentage of the light from the image to the first sensor and a second percentage of the light from the image to the second sensor, and further including a first lens between the beam splitter and the first sensor for providing the focused light on the first sensor, and a second lens between the beam splitter and the second sensor for providing the defocused light on the second sensor.
- 4. The opto-electronic video compression system of claim 1, wherein the sensor array is a stepped array.
- 5. The opto-electronic video compression system of claim 1, further including an electronic quantizing element in communication with the electronic differencing element for dividing coefficients received from the electronic differencing element by a predetermined quantizer coefficient.
- 6. The opto-electronic video compression system of claim 1, wherein the lens element includes multiple lenses.
- 7. The opto-electronic video compression system of claim 6, wherein each lens has the same focal length and the sensor is a stepped sensor.
- 8. The opto-electronic video compression system of claim 6, wherein each lens has different focal lengths and the sensor is a planer sensor.
- 9. The opto-electronic video compression system of claim 1, further including an electronic quantizing element in communication with the electronic differencing element for dividing coefficients received from the electronic differencing element by a predetermined quantizer coefficient.
- 10. The opto-electronic video compression system of claim 9, wherein the quantizer coefficient is programmable.
- 11. The opto-electronic video compression system of claim 9, wherein the electronic quantizing element is a programmable attenuation circuit.
- 12. The opto-electronic video compression system of claim 9, further including a model in communication with the electronic quantizing element and a second electronic differencing element in communication with the electronic quantizing element and the model for calculating the difference between a coefficient and a co-located coefficient from the model.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This nonprovisional application claims the benefit of copending provisional application bearing application No. 60/261,363, filed on Jan. 12, 2001, and entitled “Optical Video Compression System and Method.” The entire contents of the provisional application are incorporated by reference herein.
STATEMENT REGARDING FEDERALLY SPONSORED RESEARCH
[0002] The government has certain rights in this invention by virtue of Contract Number MDA972-01-C-0087 awarded by the U.S. Defense Advanced Research Projects Agency (DARPA).
Provisional Applications (1)
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Number |
Date |
Country |
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60261363 |
Jan 2001 |
US |