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US20020063779A1 - Electronic image movement correcting device with a variable correction step feature - Google Patents

Electronic image movement correcting device with a variable correction step feature
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US20020063779A1
US20020063779A1US09/174,428US17442898AUS2002063779A1US 20020063779 A1US20020063779 A1US 20020063779A1US 17442898 AUS17442898 AUS 17442898AUS 2002063779 A1US2002063779 A1US 2002063779A1
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image
shake
motion
correcting device
electronic
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US09/174,428
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US6424372B1 (en
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Kitahiro Kaneda
Kazuya Inou
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Canon Inc
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Assigned to CANON KABUSHIKI KAISHAreassignmentCANON KABUSHIKI KAISHAASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: INOU, KAZUYA, KANEDA, KITAHIRO
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Abstract

An image-shake correcting device comprises a motion-vector detecting circuit for detecting a motion vector relative to pictures, an electronic correcting circuit for electronically correcting an image shake on the basis of the motion vector detected by the motion-vector detecting circuit, an image enlarging circuit for performing enlargement processing on an image signal outputted from the electronic correcting circuit, and a control circuit for controlling a correction step of the electronic correcting circuit on the basis of an image enlargement ratio of the image enlarging circuit to set the correction step to an optimum state.

Description

Claims (32)

What is claimed is:
1. An image-shake correcting device comprising:
(a) motion-vector detecting means for detecting a motion vector relative to a plurality of pictures;
(b) electronic correcting means for electronically correcting an image shake on the basis of an output of said motion-vector detecting means;
(c) image enlarging means for performing enlargement processing on an image signal outputted from said electronic correcting means; and
(d) control means for controlling a correction step of said electronic correcting means in accordance with an image enlargement ratio of said image enlarging means.
2. An image-shake correcting device according toclaim 1, further comprising image pickup means, said motion-vector detecting means detecting a motion vector of an image from a picked-up image signal outputted from said image pickup means.
3. An image-shake correcting device according toclaim 1, wherein said electronic correcting means has an image memory for storing an image and corrects the image shake by shifting an image reading position of said image memory in a direction of the motion vector outputted from said motion-vector detecting means.
4. An image-shake correcting device according toclaim 3, wherein said electronic correcting means performs image-shake correction on each of luminance and chrominance signals which are outputted from said image pickup means.
5. An image-shake correcting device according toclaim 2, wherein said motion-vector detecting means detects the motion vector on the basis of a two-level signal into which the picked-up image signal is converted by a band-pass filter arranged to convert the picked-up image signal into a two-level form.
6. An image-shake correcting device according toclaim 3, wherein said electronic correcting means includes computing means for computing an absolute deviation from a reference position of the image on the basis of the motion vector detected by said motion-vector detecting means, and corrects the image shake by shifting the image reading position of said image memory on the basis of the absolute deviation.
7. An image-shake correcting device according toclaim 1, wherein said control means makes the correction step of said electronic correcting means large if the image enlargement ratio of said image enlarging means is within a predetermined range, whereas if the image enlargement ratio of said image enlarging means is outside the predetermined range, said control means makes the correction step of said electronic correcting means small.
8. An image-shake correcting device according toclaim 2, wherein said image pickup means includes a large-area image pickup element having an area larger than a normal image pickup area, and wherein said electronic correcting means corrects the image shake by shifting an image reading position of said large-area image pickup element in a direction of the motion vector outputted from said motion-vector detecting means.
9. An image-shake correcting device comprising:
(a) motion-vector detecting means for detecting a motion vector relative to a plurality of pictures;
(b) electronic correcting means for electronically correcting an image shake on the basis of an output of said motion-vector detecting means;
(c) decision means for determining whether a body of said image-shake correcting device is fixed; and
(d) control means for controlling a correction step of said electronic correcting means on the basis of an output of said decision means.
10. An image-shake correcting device according toclaim 9, further comprising image pickup means, said motion-vector detecting means detecting a motion vector of an image from a picked-up image signal outputted from said image pickup means.
11. An image-shake correcting device according toclaim 9, wherein said electronic correcting means has an image memory for storing an image and corrects the image shake by shifting an image reading position of said image memory in a direction of the motion vector outputted from said motion-vector detecting means.
12. An image-shake correcting device according toclaim 11, wherein said electronic correcting means includes computing means for computing an absolute deviation from a reference position of the image on the basis of the motion vector detected by said motion-vector detecting means, and corrects the image shake by shifting the image reading position of said image memory on the basis of the absolute deviation.
13. An image-shake correcting device according toclaim 9, wherein said control means makes the correction step of said electronic correcting means small if said decision means determines that the body of said image-shake correcting device is fixed, whereas if said decision means determines that the body of said image-shake correcting device is not fixed, said control means makes the correction step of said electronic correcting means large.
14. An image-shake correcting device according toclaim 13, wherein said decision means determines whether the body of said image-shake correcting device is fixed to a tripod.
15. An image-shake correcting device according toclaim 14, further comprising enlarging means for performing enlargement processing on an image signal outputted from said electronic correcting means.
16. An image-shake correcting device comprising:
(a) motion-vector detecting means for detecting a motion vector relative to a plurality of pictures;
(b) electronic correcting means for electronically correcting an image shake on the basis of an output of said motion-vector detecting means;
(c) magnification varying means for varying a magnification of an image by varying an angle of view; and
(d) control means for controlling a correction step of said electronic correcting means on the basis of the magnification of said magnification varying means.
17. An image-shake correcting device according toclaim 16, further comprising image pickup means, said motion-vector detecting means detecting a motion vector of the image from a picked-up image signal outputted from said image pickup means.
18. An image-shake correcting device according toclaim 17, wherein said electronic correcting means has an image memory for storing the image and corrects the image shake by shifting an image reading position of said image memory in a direction of the motion vector outputted from said motion-vector detecting means.
19. An image-shake correcting device according toclaim 18, wherein said electronic correcting means includes computing means for computing an absolute deviation from a reference position of the image on the basis of the motion vector detected by said motion-vector detecting means, and corrects the image shake by shifting the image reading position of said image memory on the basis of the absolute deviation.
20. An image-shake correcting device according toclaim 19, wherein said control means makes the correction step of said electronic correcting means large if said magnification varying means is set to a small magnification, whereas if said magnification varying means is set to a large magnification, said control means makes the correction step of said electronic correcting means small.
21. An image-shake correcting device according toclaim 20, wherein said magnification varying means includes a zooming lens.
22. An image-shake correcting device comprising:
(a) motion-vector detecting means for detecting a motion vector relative to a plurality of pictures;
(b) electronic correcting means for electronically correcting an image shake on the basis of an output of said motion-vector detecting means; and
(c) control means for controlling a correction step of said electronic correcting means on the basis of a magnitude of the motion vector detected by said motion-vector detecting means.
23. An image-shake correcting device according toclaim 22, further comprising image pickup means, said motion-vector detecting means detecting a motion vector of an image from a picked-up image signal outputted from said image pickup means.
24. An image-shake correcting device according toclaim 22, wherein said electronic correcting means has an image memory for storing the image and corrects the image shake by shifting an image reading position of said image memory in a direction of the motion vector outputted from said motion-vector detecting means.
25. An image-shake correcting device according toclaim 24, wherein said electronic correcting means includes computing means for computing an absolute deviation from a reference position of the image on the basis of the motion vector detected by said motion-vector detecting means, and corrects the image shake by shifting the image reading position of said image memory on the basis of the absolute deviation.
26. An image-shake correcting device according toclaim 22, wherein said control means makes the correction step of said electronic correcting means larger if the motion vector is larger, whereas if the motion vector is smaller, said control means makes the correction step of said electronic correcting means smaller.
27. An image-shake correcting device according toclaim 26, wherein said control means varies the correction step in a manner represented by an exponential function.
28. An image-shake correcting device comprising:
(a) motion-vector detecting means for detecting a motion vector relative to a plurality of pictures;
(b) electronic correcting means having an image memory for storing an image and arranged to correct an image shake by shifting an image reading position of said image memory in a direction of the motion vector outputted from said motion-vector detecting means; and
(c) control means for controlling a correction step of said electronic correcting means on the basis of a magnitude of the motion vector detected by said motion-vector detecting means.
29. An image-shake correcting device according toclaim 28, further comprising image pickup means, said motion-vector detecting means detecting a motion vector of the image from a picked-up image signal outputted from said image pickup means.
30. An image-shake correcting device according toclaim 29, wherein said electronic correcting means includes computing means for computing an absolute deviation from a reference position of the image on the basis of the motion vector detected by said motion-vector detecting means, and corrects the image shake by shifting the image reading position of said image memory on the basis of the absolute deviation.
31. An image-shake correcting device according to claim30, wherein said control means makes the correction step of said electronic correcting means smaller if the absolute deviation is smaller, whereas if the absolute deviation is larger, said control means makes the correction step of said electronic correcting means larger.
32. An image-shake correcting device according to claim31, wherein said control means varies the correction step in a manner represented by an exponential function.
US09/174,4281993-12-171998-10-19Electronic image-movement correcting device with a variable correction step featureExpired - Fee RelatedUS6424372B1 (en)

Priority Applications (1)

Application NumberPriority DateFiling DateTitle
US09/174,428US6424372B1 (en)1993-12-171998-10-19Electronic image-movement correcting device with a variable correction step feature

Applications Claiming Priority (8)

Application NumberPriority DateFiling DateTitle
JP5-3444131993-12-17
JPHEI05-3444131993-12-17
JP5-3444141993-12-17
JP5344413AJPH07177416A (en)1993-12-171993-12-17 Image blur prevention device
JP5344414AJPH07177417A (en)1993-12-171993-12-17 Image blur prevention device
JPHEI05-3444141993-12-17
US08/904,455US5825415A (en)1993-12-171997-08-01Electronic image-movement correcting device with a variable correction step feature
US09/174,428US6424372B1 (en)1993-12-171998-10-19Electronic image-movement correcting device with a variable correction step feature

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US08/904,455DivisionUS5825415A (en)1993-12-171997-08-01Electronic image-movement correcting device with a variable correction step feature

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US20020063779A1true US20020063779A1 (en)2002-05-30
US6424372B1 US6424372B1 (en)2002-07-23

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US5825415A (en)1998-10-20

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