Claims
- 1. A method for improving the quality of an image in an electronic imaging system, comprising the steps of:
(a) capturing an image frame; (b) capturing a first partial dark frame of a plurality of partial dark frames comprising a full dark frame, wherein each of the plurality of partial dark frames corresponds to a separate section of the image frame; (c) subtracting the first partial dark frame from the corresponding section of the image frame; and (d) repeating steps (b) and (c) for each of the remaining partial dark frames until all of the partial dark frames have been subtracted from corresponding sections of the image frame.
- 2. The method of claim 1, where step (a) further comprises:
exposing a sensor to radiation that is internal and external to the electronic imaging system; detecting an image frame by the sensor; converting analog signals representing the image frame from the sensor to digital signals by an analog/digital (A/D) converter; reading the digital signals by a processor; and storing the image frame in a main image buffer.
- 3. The method of claim 1, where step (b) further comprises:
exposing a sensor to radiation that is internal to the electronic imaging system; detecting a full dark frame by the sensor; converting analog signals representing the full dark frame from the sensor to digital signals by an A/D converter; reading a partial dark frame of the full dark frame by a processor; and storing the partial dark frame in a partial dark frame buffer.
- 4. The method of claim 3, where the reading step further comprises reading a set of pixels of the full dark frame.
- 5. The method of claim 1, where the image frame and the partial dark frames comprise pixels, wherein each pixel has a value.
- 6. The method of claim 5, where step (c) further comprises subtracting a value of each pixel in the partial dark frame from a value of a corresponding pixel in the corresponding section of the image frame.
- 7. The method of claim 5, where step (c) further comprises:
subtracting the value of each pixel in a row of pixels in the partial dark frame from the value of the corresponding pixel in the image frame; and repeating the subtracting step for each subsequent pixel in the row of pixels and for subsequent rows of pixels in the partial dark frame.
- 8. The method of claim 1, where the electronic imaging system is a digital camera.
- 9. An electronic imaging system comprising:
means for capturing an image frame; means for capturing a partial dark frame of a plurality of partial dark frames comprising a full dark frame, wherein each of the plurality of partial dark frames corresponds to a separate section of the image frame; means for subtracting the partial dark frame from the corresponding section of the image frame; and means for repeating the steps of capturing a partial dark frame and subtracting the partial dark frame from the corresponding section of the image frame for each of the remaining partial dark frames until all of the partial dark frames have been subtracted from corresponding sections of the image frame.
- 10. The electronic imaging system of claim 9, where the means for capturing the image frame further comprises:
a sensor; an A/D converter; a processor; and a main image buffer.
- 11. The electronic imaging system of claim 10, where the sensor comprises a charge coupled device.
- 12. The electronic imaging system of claim 10, where the sensor comprises a complementary metal oxide semiconductor device.
- 13. The electronic imaging system of claim 9, where the means for capturing the partial dark frame further comprises:
a sensor; an A/D converter; a processor; and a partial dark frame buffer.
- 14. The electronic imaging system of claim 13, where the sensor comprises a charge coupled device.
- 15. The electronic imaging system of claim 13, where the sensor comprises a complementary metal oxide semiconductor device.
- 16. The electronic imaging system of claim 9, where the electronic imaging system is a digital camera.
- 17. A method for improving the quality of an image obtained by an electronic imaging system, comprising the steps of:
(a) capturing an image frame; (b) capturing a partial dark frame, wherein the partial dark frame corresponds to a section of the image frame; (c) subtracting the partial dark frame from the corresponding section of the image frame; and (d) repeating steps (b) and (c) for additional partial dark frames.
- 18. The method of claim 17, where step (a) further comprises:
exposing a sensor to radiation that is internal and external to the electronic imaging system; detecting an image frame by the sensor; converting analog signals representing the image frame from the sensor to digital signals by an A/D converter; reading the digital signals by a processor; and storing the image frame in a main image buffer.
- 19. The method of claim 17, where step (b) further comprises:
exposing a sensor to radiation that is internal to the electronic imaging system; detecting a full dark frame by the sensor; converting analog signals representing the full dark frame from the sensor to digital signals by an A/D converter; reading a partial dark frame of the full dark frame by a processor; and storing the partial dark frame in a partial dark frame buffer.
- 20. The method of claim 17, where step (c) further comprises subtracting values of pixels in the partial dark frame from values of corresponding pixels in the corresponding section of the image frame.
CROSS-REFERENCES TO RELATED APPLICATIONS
[0001] This application is related to U.S. Patent Application to Matherson et al., entitled “DARK FRAME SUBTRACTION USING COMPRESSION” filed on the same date herewith and incorporated herein in its entirety by reference.