IP Library › Granted Patent US 7,248,289
Granted Patent B2
US 7,248,289 · App. 10/294,376 · Granted Jul 24, 2007

Image-pickup signal processor and method of detecting flicker

Assignee: Sony Corporation
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 7,248,289
App. No.
10/294,376
Granted
Jul 24, 2007
Kind
B2
Abstract

A plurality of flicker detection frames are formed by dividing an image into a plurality of frames. A flicker detection circuit performs detection of luminance data for each of the flicker detection frames. The differences between the luminance data of the preceding frame and the current frame, and between the luminance data of the current frame and the following frame with respect to each of the flicker detection frames are taken, a flicker component is extracted, and the flicker frequency is calculated, by a flicker frequency determination program in a microcomputer. Then, the space between the flicker detection frames in which a crest or trough of the extracted flicker component appears is measured, and the results are converted into the flicker frequency. The frame rate of the image pickup signals is controlled so as not to be synchronized with the flicker frequency.

Claims (35)

1. An image-pickup signal processor for receiving image pickup signals that are output from a solid-state image pickup device and outputting the signals after predetermined signal processing, comprising:

a processor used for detecting a flicker frequency in an image using a flicker frequency determination program,

wherein the image is divided into a plurality of frames to form a plurality of flicker detection frames,

wherein luminance data for each of the flicker detection frames is detected,

wherein flicker data is extracted by taking differences between the luminance data of a preceding flicker detection frame and a current flicker detection frame, and between the luminance data of the current flicker detection frame and a following flicker detection frame with respect to each of the flicker detection frames, and

wherein the flicker frequency is calculated from the extracted flicker data.

2. An image-pickup signal processor according to claim 1 , wherein the processor is used in analyzing the luminance data for each flicker detection frame of the image.

3. An image-pickup signal processor according to claim 1 , further comprising a means for arbitrarily setting a width of and/or space between the flicker detection frames.

4. An image-pickup signal processor according to claim 1 , wherein the luminance data for each of the flicker detection frames is detected by the processor, and

wherein the differences between the luminance data of the preceding frame and the current frame, and between the luminance data of the current frame and the following frame with respect to each of the flicker detection frames are determined, and the flicker frequency is calculated by a flicker frequency determination program run by the processor.

5. An image-pickup signal processor according to claim 1 , wherein the luminance data for each of the flicker detection frames is obtained, the differences between the luminance data of the preceding frame and the current frame, and between the luminance data of the current frame and the following frame with respect to each of the flicker detection frames are determined, and the flicker frequency is calculated by a flicker frequency determination program run by the processor.

6. An image-pickup signal processor according to claim 1 , wherein the microcomputer obtains measurements for spaces between where a crest or trough of the extracted flicker data appears, and converts the measurements into the flicker frequency.

7. An image-pickup signal processor according to claim 1 , further comprising a means for controlling a frame rate of the image pickup signals so as not to be synchronized with the flicker frequency.

8. An image-pickup signal processor according to claim 1 , wherein the image is divided in a vertical scanning direction.

9. A method of detecting flicker in an image-pickup signal processor for receiving image pickup signals that are output from a solid-state image pickup device and outputting the signals after predetermined signal processing, the method comprising the steps of:

dividing an image into a plurality of flicker detection frames and detecting luminance data for each of the flicker detection frames; and

extracting flicker data by taking the differences between the luminance data of a preceding frame and a current frame, and between the luminance data of the current frame and a following frame with respect to each of the flicker detection frames; and

calculating a flicker frequency from the extracted flicker data, and

calculating measurements for spaces between where a crest or trough of the extracted flicker data appears, and the measurements are converted into the flicker frequency.

10. A method of detecting flicker in an image-pickup signal processor for receiving image pickup signals that are output from a solid state image pickup device and outputting the signals after predetermined signal processing, the method comprising the steps of:

dividing an image into a plurality of flicker detection frames and detecting luminance data for each of the flicker detection frames; and

extracting flicker data by taking the differences between the luminance data of a preceding frame and a current frame, and between the luminance data of the current frame and a following frame with respect to each of the flicker detection frames; and

calculating a flicker frequency from the extracted flicker data, and

wherein a frame rate of the image pickup signals is controlled so as not to be synchronized with the flicker frequency.

11. A computer-readable recording medium having stored therein a flicker frequency determination program for detecting a flicker frequency of image pickup signals output from a solid-state image pickup device, the program comprising the steps of:

extracting flicker data by taking differences between luminance data of a preceding flicker detection frame and a current flicker detection frame, and between luminance data of the current flicker detection frame and a following flicker detection frame with respect to each of a plurality of flicker detection frames that are formed by dividing an image picked up by the solid-state image pickup device; and

calculating the flicker frequency from the extracted flicker data,

wherein spaces between the flicker detection frames where a crest or trough of the extracted flicker data appears are measured and the measurements are converted into the flicker frequency.

12. A camera comprising:

a solid state image pickup device;

an image-pickup signal processor for receiving image pickup signals that are output from the solid-state image pickup device and outputting the signals after predetermined signal processing; and

a microcomputer for detecting a flicker frequency in an image using a flicker frequency determination program,

wherein the image is divided into a plurality of flicker detection frames,

wherein luminance data for each of the flicker detection frames is detected and flicker data is extracted by taking differences between the luminance data of a preceding flicker detection frame and a current flicker detection frame, and between the luminance data of the current flicker detection frame and a following flicker detection frame with respect to each of the flicker detection frames, and

wherein the flicker frequency is calculated from the extracted flicker data.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 14, 2002
From: KATOH, KATSUMI; MACHISHIMA, EIJI; KODAKE, TOSHIAKI
To: SONY CORPORATION
Reel/Frame 013499/0268 →
Priority Claims (1)
JP 2001-383942 · Dec 18, 2001 · national
Continuity (1)
Related Publication 20030112343A1 · Jun 19, 2003