IP Library › Granted Patent US 12,501,157
Granted Patent B2
US 12,501,157 · App. 18/533,188 · Granted Dec 16, 2025

Blur correction device, imaging apparatus, monitoring system, and program

Inventor: Tetsuya Fujikawa (Saitama, JP)
Assignee: FUJIFILM Corporation
H04N23/683H04N23/00H04N23/687H04N23/73
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Quick Facts
Patent No.
US 12,501,157
App. No.
18/533,188
Granted
Dec 16, 2025
Kind
B2
Abstract

A blur correction device includes a sensor that detects an amount of blurring of an imaging apparatus, a mechanical blur correction device that corrects blurring by moving an optical element included in the imaging apparatus based on the amount of blurring, an electronic blur correction circuit corrects the blurring based on the amount of blurring with respect to an image obtained through imaging by using the imaging apparatus, and a supplementary blur correction circuit that corrects the blurring by applying a FIR filter or an IIR filter with respect to the image obtained by imaging through sharing and operating the mechanical blur correction device and the electronic blur correction circuit at a predetermined ratio during exposure in the imaging apparatus.

Claims (35)

1 . A blur correction device comprising: a sensor that detects an amount of blurring of an imaging apparatus; a mechanical blur correction device that corrects blurring by moving an optical element included in the imaging apparatus based on the amount of blurring; an electronic blur correction circuit that corrects the blurring based on the amount of blurring with respect to an image obtained through imaging by using the imaging apparatus; a supplementary blur correction circuit that corrects the blurring by applying a FIR (Finite Impulse Response) filter or an IIR (Infinite Impulse Response) filter with respect to the image obtained by imaging through sharing and operating the mechanical blur correction device and the electronic blur correction circuit at a predetermined ratio during exposure in the imaging apparatus, wherein the predetermined ratio[n] is a ratio indicating which percentage of an amount to correct the blurring is allocated to the mechanical blur correction device and the electronic blur correction circuit.

2 . The blur correction device as claimed in claim 1 ,

wherein the FIR filter or the IIR filter is generated every time the imaging apparatus performs imaging for one frame, or

wherein the FIR filter or the IIR filter is generated every time the imaging apparatus performs imaging for a plurality of frames, or

wherein the same FIR filter or IIR filter is used over a period in which the imaging apparatus performs imaging for a plurality of frames, or

wherein the same FIR filter or IIR filter is used over a predetermined time period.

3 . The blur correction device as claimed in claim 2 ,

wherein the electronic blur correction circuit corrects the blurring by performing image processing based on the amount of blurring and operation state information about an operation state of the optical element during the exposure in the imaging apparatus, and

wherein the FIR filter or the IIR filter is determined in accordance with the operation state information in a case where the mechanical blur correction device and the electronic blur correction circuit are operated during the exposure, the ratio, the amount of blurring, and the exposure in the imaging apparatus.

4 . The blur correction device according to claim 1 ,

wherein the exposure is an exposure within one frame.

5 . The blur correction device according to claim 1 ,

wherein the electronic blur correction circuit corrects the blurring by performing image processing based on the amount of blurring and operation state information about an operation state of the optical element during exposure in the imaging apparatus, and

wherein the operation state information is information including at least one of a period in which the optical element is moving during the exposure period or a period in which the optical element is not moving during the exposure period.

6 . The blur correction device according to claim 1 ,

wherein the electronic blur correction circuit corrects the blurring by performing image processing based on the amount of blurring and operation state information about an operation state of the optical element during exposure in the imaging apparatus, and

wherein the operation state information is information including information that is capable of specifying a movement locus of the optical element during the exposure period.

7 . The blur correction device according to claim 1 ,

wherein the electronic blur correction circuit corrects the blurring by performing image processing based on the amount of blurring and operation state information about an operation state of the optical element during exposure in the imaging apparatus, and

wherein the image processing is processing including processing of cutting out the image in accordance with a cutout position determined depending on at least one of the operation state information, the ratio, or the amount of blurring.

8 . The blur correction device according to claim 1 ,

wherein the optical element is at least one of an imaging element in which subject light indicating a subject is imaged by an optical member or the optical member.

9 . The blur correction device according to claim 1 ,

wherein the sensor detects the amount of blurring for each of a plurality of frequencies of the blurring, and

the ratio is determined depending on the frequency.

10 . The blur correction device according to claim 1 ,

wherein the sensor detects the amount of blurring in each of a pair of axial directions, and

wherein the ratio is determined depending on the axial direction.

11 . An imaging apparatus comprising:

the blur correction device according to claim 1 ; and

an image sensor that generates the image through imaging.

12 . A monitoring system comprising:

the imaging apparatus according to claim 11 ; and

a control device that performs at least one of control of causing a display to display the image on which a correction result of the supplementary blur correction circuit is reflected or control of causing a memory to store image data indicating the image on which the correction result is reflected.

13 . A non-transitory computer-readable storage medium storing a program executable by a computer to perform processing comprising: mechanical blur correction processing of correcting blurring by moving an optical element included in an imaging apparatus based on an amount of blurring detected by a sensor that detects the amount of blurring of the imaging apparatus; electronic blur correction processing of correcting the blurring based on the amount of blurring with respect to an image obtained through imaging by using the imaging apparatus; and supplementary blur correction processing of correcting the blurring by applying a FIR (Finite Impulse Response) filter or an IIR (Infinite Impulse Response) filter with respect to the image obtained by imaging through sharing and operating the mechanical blur correction processing and the electronic blur correction processing at a predetermined ratio during exposure in the imaging apparatus, wherein the predetermined ratio[n] is a ratio indicating which percentage of an amount to correct the blurring is allocated to the mechanical blur correction device and the electronic blur correction circuit.

Priority Claims (1)
JP 2019-028843 · Feb 20, 2019 · national
Continuity (4)
Continuation 18045459 · Oct 10, 2022
Continuation 17403890 · Aug 17, 2021
Continuation PCTJP2020006047 · Feb 17, 2020
Related Publication 20240129631A1 · Apr 18, 2024
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