IP Library Granted Patent US 10,169,682
Granted Patent B2
US 10,169,682 · App. 15/129,740 · Granted Jan 1, 2019

Image processing device

Inventors: Yumiko Nakagawa (Wakayama, JP); Tomoo Nakano (Wakayama, JP); Yukiko Murata (Wakayama, JP)
Assignee: NK WORKS CO., LTD.
G06K9/6267G06K9/00751G06K9/00771G11B27/00G11B27/34H04N5/915H04N5/93H04N5/265H04N7/181
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Quick Facts
Patent No.
US 10,169,682
App. No.
15/129,740
Granted
Jan 1, 2019
Kind
B2
Abstract

Provided is an image processing device for sorting frames included in one moving image into different channels, the frames included in the moving image being a mixture of frames belonging to the different channels. The image processing device includes an automatic sorting unit and a re-sorting unit. The automatic sorting unit calculates a similarity degree of the plurality of frames included in the moving image by performing image processing on the frames, and sorts the plurality of frames into the plurality of channels based on the similarity degree. The re-sorting unit accepts, from a user, an association operation of individually associating at least one non-sorted frame, which is not automatically sorted by the automatic sorting unit, with any of the plurality of channels, and individually sorts the non-sorted frame to any of the plurality of channels based on content of the association operation.

Claims (57)

1. An image processing device for sorting frames included in one mixed time-lapse moving image into different channels, the mixed time-lapse moving image being a moving image wherein a plurality of moving images recorded using a time-lapse method are mixed on one time-line, the frames included in the mixed time-lapse moving image being a mixture of frames belonging to the different channels, comprising

an automatic sorting unit of a computer configured to calculate a similarity degree of the plurality of frames included in the mixed time-lapse moving image by performing image processing on the frames, and sort the plurality of frames into the plurality of channels based on the similarity degree;

a re-sorting unit of the computer configured to accept, from a user, an association operation of individually associating at least one non-sorted frame, which is not automatically sorted by the automatic sorting unit, with any of the plurality of channels, and individually sort the non-sorted frame to any of the plurality of channels based on content of the association operation; and

wherein the re-sorting unit is configured to accept, from the user, an instruction to reproduce frames belonging to a channel selected from the plurality of channels by the user, and display, in a display unit connected to the computer, the frames belonging to the selected channel sequentially along the time-line in a frame-by-frame format upon detecting the instruction,

wherein reproduction of the channel selected is enabled regardless of specifications by the which the moving image is recorded.

2. The image processing device according to claim 1 ,

wherein the re-sorting unit is configured to display a re-sorting screen for displaying the non-sorted frame, and a plurality of channel objects, which are objects respectively corresponding to the plurality of channels, and

the association operation is an operation for designating, on the re-sorting screen, any of the plurality of channel objects to the non-sorted frame.

3. The image processing device according to claim 2 ,

wherein each channel object displays a representative image that represents a frame group belonging to a corresponding channel.

4. The image processing device according to claim 3 ,

wherein the re-sorting screen is configured to display the at least one non-sorted frame in a list.

5. The image processing device according to claim 3 ,

wherein the re-sorting unit is configured to accept, from the user, a selection operation of selecting one object from among an object group including the plurality of channel objects, and display a frame group in a list in a predetermined list display area on the re-sorting screen, the frame group belonging to a channel that corresponds to the channel object currently selected by the selection operation.

6. The image processing device according to claim 2 ,

wherein the re-sorting screen is configured to display the at least one non-sorted frame in a list.

7. The image processing device according to claim 6 ,

wherein the re-sorting screen further displays a non-sorted object, which is an object corresponding to a sort of putting the at least one non-sorted frame together, and

the re-sorting unit is configured to accept, from the user, a selection operation of selecting one object from among an object group including the plurality of channel objects and the non-sorted object, and display a frame group in a list in a predetermined list display area on the re-sorting screen, the frame group belonging to a channel or sort that corresponds to the object currently selected by the selection operation.

8. The image processing device claim 7 ,

wherein, when a frame group belonging to any of the plurality of channels is displayed in a list in the list display area, the re-sorting unit is configured to accept, from the user, an operation for individually associating a frame that is included in the frame group displayed in the list with any of the plurality of channels, and sort the frame as per the operation to the channel as per the operation.

9. The image processing device according to claim 6 ,

wherein the re-sorting unit is configured to accept, from the user, a selection operation of selecting one object from among an object group including the plurality of channel objects, and display a frame group in a list in a predetermined list display area on the re-sorting screen, the frame group belonging to a channel that corresponds to the channel object currently selected by the selection operation.

10. The image processing device according to claim 2 ,

wherein the re-sorting unit is configured to accept, from the user, a selection operation of selecting one object from among an object group including the plurality of channel objects, and display a frame group in a list in a predetermined list display area on the re-sorting screen, the frame group belonging to a channel that corresponds to the channel object currently selected by the selection operation.

11. The image processing device according to claim 10 ,

wherein, when a frame group belonging to any of the plurality of channels is displayed in a list in the list display area, the re-sorting unit is configured to accept, from the user, an operation for individually associating a frame that is included in the frame group displayed in the list with any of the plurality of channels, and sort the frame as per the operation to the channel as per the operation.

12. The image processing device according to claim 2 , wherein the re-sorting unit is configured to accept, from the user, a selection operation of selecting one object from among an object group including the plurality of channel objects, and reproduce a frame group as a moving image video in a predetermined reproduction area on the re-sorting screen, the frame group belonging to a channel that corresponds to the object currently selected by the selection operation.

13. The image processing device according to claim 2 ,

wherein the association operation includes an operation of dragging and dropping the non-sorted frame onto any of the plurality of channel objects, or dragging and dropping any of the plurality of channel objects onto the non-sorted frame, on the re-sorting screen.

14. The image processing device according to claim 2 ,

wherein the re-sorting screen displays a group of frames belonging to each channel in order of time series in a list.

15. The image processing device according to claim 1 ,

wherein the re-sorting unit is configured to display information indicating an operation key that corresponds to each of the plurality of channels, and

the association operation includes operation of the operation key.

16. The image processing device according to claim 1 ,

wherein the re-sorting unit is configured to recalculate the frame rate each time the non-sorted frame is sorted to any of the plurality of channels.

17. The image processing device according to claim 1 ,

wherein the re-sorting unit is configured to accept, from the user, an instruction to combine two or more channels included in the plurality of channels, and combine the two or more channels in response to the instruction for combination.

18. The image processing device according to claim 1 ,

wherein the re-sorting unit is configured to accept, from the user, an instruction to create a channel other than the plurality of channels automatically created by the automatic sorting unit, and newly create the channel in response to the instruction for creation.

19. A non-transitory computer readable medium storing an image processing program for sorting frames included in one mixed time-lapse moving image into different channels, the mixed time-lapse moving image being a moving image wherein a plurality of moving images recorded using a time-lapse method are mixed on one time-line, the frames included in the mixed time-lapse moving image being a mixture of frames belonging to the different channels, the image processing program causing a computer to execute the steps of:

calculating a similarity degree of the plurality of frames included in the mixed time-lapse moving image by performing image processing on the frames;

sorting the plurality of frames into the plurality of channels based on the similarity degree;

accepting, from a user, an association operation of individually associating at least one non-sorted frame, which is not automatically sorted, with any of the plurality of channels;

individually sorting the non-sorted frame to any of the plurality of channels based on content of the association operation;

accepting, from the user, an instruction to reproduce frames belonging to a channel selected from the plurality of channels by the user; and

displaying, in a display unit connected to the computer, the frames belonging to the selected channel sequentially along the time-line in a frame-by-frame format upon detecting the instruction,

wherein reproduction of the channel selected is enabled regardless of specifications by the which the moving image is recorded.

20. An image processing method for sorting frames included in one mixed time-lapse moving image into different channels, the mixed time-lapse moving image being a moving image wherein a plurality of moving images recorded using a time-lapse method are mixed on one time-line, the frames included in the mixed time-lapse moving image being a mixture of frames belonging to the different channels, the method comprising the steps of:

calculating a similarity degree of the plurality of frames included in the mixed time-lapse moving image by performing image processing on the frames;

sorting the plurality of frames into the plurality of channels based on the similarity degree;

accepting, from a user, an association operation of individually associating at least one non-sorted frame, which is not automatically sorted, with any of the plurality of channels;

individually sorting the non-sorted frame to any of the plurality of channels based on content of the association operation;

accepting, from the user, an instruction to reproduce frames belonging to a channel selected from the plurality of channels by the user; and

displaying, in a display unit connected to the computer, the frames belonging to the selected channel sequentially along the time-line in a frame-by-frame format upon detecting the instruction,

wherein reproduction of the channel selected is enabled regardless of specifications by the which the moving image is recorded.

Assignments (2)
CHANGE OF NAME Recorded Jun 21, 2019
From: NK WORKS CO., LTD
To: NORITSU PRECISION CO., LTD.
Reel/Frame 049551/0482 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 7, 2018
From: NAKANO, TOMOO; MURATA, YUKIKO; NAKAGAWA, YUMIKO
To: NK WORKS CO., LTD.
Reel/Frame 047437/0063 →
Priority Claims (1)
JP 2014-066867 · Mar 27, 2014 · national
Continuity (1)
Related Publication 20170140251A1 · May 18, 2017