IP Library › Granted Patent US 8,520,098
Granted Patent B2
US 8,520,098 · App. 11/610,740 · Granted Aug 27, 2013

Image pickup apparatus and reproducing apparatus

Inventor: Yoshinori Watanabe (Ohta-ku, JP)
Assignee: Canon Kabushiki Kaisha
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Quick Facts
Patent No.
US 8,520,098
App. No.
11/610,740
Granted
Aug 27, 2013
Kind
B2
Abstract

When a shooting mode is changed from a non-super-resolution mode to a super-resolution mode, an image pickup apparatus lowers a compression ratio in a compression unit. On the other hand, when the shooting mode is changed from the super-resolution mode to the non-super-resolution mode, the image pickup apparatus raises a compression ratio in the compression unit.

Claims (33)

1. An image pickup apparatus comprising:

a moving image shooting unit configured to shoot a moving image;

a compression unit configured to compress a subject image in the moving image obtained from the moving image shooting unit to generate a compressed subject image;

a shooting mode changing unit configured to allow a user to change a shooting mode to a super-resolution mode in which images for a super-resolution processing generating a super resolution image using the images, which is a higher resolution image than each image, are shot, or a non-super resolution mode;

a compression ratio changing unit configured to change a compression ratio of compression by the compression ratio associated with the shooting mode, wherein the compression ratio in the super-resolution mode is lower than the compression ratio in the non-super-resolution mode; and

a recording unit configured to record the compressed subject image in a recording medium,

wherein in the super-resolution mode, the shooting mode changing unit changes the shooting mode to the non-super resolution mode automatically based on a predetermined number of images compressed at a low compression ratio being recorded by the recording unit, the predetermined number of images being set by a user so that the shooting mode is changed automatically when the predetermined number of images is reached and the predetermined number being equal to or larger than a number of images necessary to generate the super resolution image by the super resolution processing.

2. The image pickup apparatus according to claim 1 , wherein in the super-resolution mode, the compression unit compresses frames to be generated by intraframe coding and compresses frames to be generated by interframe coding to generate the compressed subject image; and in the non-super resolution mode, the compression unit compresses frames to be generated by intraframe coding and compressed frames to be generated by interframe coding to generate the compressed subject image.

3. The image pickup apparatus according to claim 1 , wherein in the super-resolution mode, the subject image is compressed only in compressed frames to be generated by intraframe coding; and in the non-super resolution mode, the subject image is compressed both in compressed frames to be generated by intraframe coding and compressed frames to be generated by interframe coding.

4. The image pickup apparatus according to claim 1 , further comprising:

a header information writing unit configured to attach header information about the compression ratio to the compressed subject image,

wherein the recording unit records, in the recording medium, the compressed subject image to which the header information is attached.

5. The image pickup apparatus according to claim 4 , further comprising:

a frame resolution changing unit configured to change frame resolution of a subject image to be recorded in the recording medium,

wherein the header information writing unit attaches header information about the frame resolution to the subject image; and

in the super-resolution mode, the frame resolution changing unit changes the frame resolution higher than that of in the non-super resolution shooting mode.

6. The image pickup apparatus according to claim 1 , further comprising:

a primary storage unit configured to temporarily store a plurality of uncompressed subject images,

wherein when the shooting mode is changed to the super-resolution mode by the shooting mode changing unit, the compression unit compresses, at the lower compression ratio than that of in the non-super-resolution shooting mode, uncompressed subject images obtained before the time at which the shooting mode is changed to the super-resolution shooting mode and temporarily stored in the primary storage unit.

7. An image pickup method comprising:

shooting a moving image;

a compression step of compressing a subject image in the moving image obtained from a moving image shooting unit to generate a compressed subject image;

a shooting mode changing step of allowing a user to change from a super-resolution mode in which images for a super resolution processing generating a super resolution image using images, which is a higher resolution image than each image, are shot, or a non-super resolution mode;

a compression ratio changing step of changing a compression ratio associated with the shooting mode, wherein if the shooting mode is changed from the non-super-resolution mode to the super-resolution mode at the shooting mode changing step, the compression ratio is changed lower than that of the non-super resolution mode; and

a recording step of recording the compressed subject image in a recording medium,

wherein in the super-resolution mode, the shooting mode is changed to the non-super resolution mode automatically based on a predetermined number of images compressed at a low compression ratio being recorded, the predetermined number of images being set by a user so that the shooting mode is changed automatically when the predetermined number of images is reached and the predetermined number being equal to or larger than a number of images necessary to generate the super resolution image by the super resolution processing.

8. A non-transitory computer-readable recording medium having stored thereon computer-readable instructions for a computer to execute an image pickup method comprising:

a moving image shooting step of shooting a moving image;

a compression step of compressing a subject image in the moving image obtained from a moving image shooting unit to generate a compressed subject image;

a shooting mode changing step of allowing a user to change from a super-resolution mode in which images for a super resolution processing generating a super resolution image using the images, which is a higher resolution image than each image, are shot, or a non-super resolution mode;

a compression ratio changing step of changing a compression ratio associated with the shooting mode, wherein if the shooting mode is changed from the non-super-resolution mode to the super-resolution mode at the shooting mode changing step, the compression ratio is changed lower than that of the non-super resolution mode; and

a recording step of recording the compressed subject image in a recording medium,

wherein in the super-resolution mode, the shooting mode is changed to the non-super resolution mode automatically based on a predetermined number of images compressed at a low compression ratio being recorded, the predetermined number of images being set by a user so that the shooting mode is changed automatically when the predetermined number of images is reached and the predetermined number being equal to or larger than a number of images necessary to generate the super resolution image by the super resolution processing.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 14, 2006
From: WATANABE, YOSHINORI
To: CANON KABUSHIKI KAISHA
Reel/Frame 018636/0133 →
Priority Claims (2)
JP 2005-364043 · Dec 16, 2005 · national
JP 2006-314402 · Nov 21, 2006 · national
Continuity (1)
Related Publication 20070139536A1 · Jun 21, 2007