IP Library › Granted Patent US 11,222,417
Granted Patent B2
US 11,222,417 · App. 16/483,575 · Granted Jan 11, 2022

Data structure for creating image-processing data and method for creating image-processing data

Inventor: Nobuo Oishi (Kosai, JP)
Assignee: FUJI CORPORATION
G06T7/001B25J9/1697G06K9/6201G06T7/70G06K2209/19G06T2207/30164
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Quick Facts
Patent No.
US 11,222,417
App. No.
16/483,575
Granted
Jan 11, 2022
Kind
B2
Abstract

Data structure for image-processing data is for creating image-processing data necessary for performing image processing on captured images of multiple workpieces when an articulated robot extracts a workable target workpiece from among multiple supplied workpieces. The data structure includes workpiece shape data for recognizing a target workpiece by pattern matching and tool data configured to check whether there is interference between a tool mounted on the articulated robot and a peripheral workpiece. The data structure is configured such that the combination of the workpiece shape data and the tool data can be rearranged for each workpiece or for each tool.

Claims (39)

1. A non-transitory medium storing instructions which when executed by a computer cause the computer to perform a method, the method comprising:

creating image-processing data necessary for performing image processing on captured images of multiple workpieces when an articulated robot extracts a workable target workpiece from among multiple supplied workpieces based upon a data structure, wherein

the data structure includes:

workpiece shape data for recognizing the target workpiece by pattern matching; and

tool data applicable to each of the multiple supplied workpieces for checking whether there is interference between a tool mounted on the articulated robot and a peripheral workpiece,

the workpiece shape data for recognizing the target workpiece is usable in first different image-processing data for a different tool other than the tool, and

the tool data for checking whether there is interference is usable in second different image-processing data for a different workpiece other than the target workpiece.

2. The non-transitory medium according to claim 1 , wherein the workpiece shape data includes an outer shape of the workpiece and a tool work position at which the tool performs work on the workpiece.

3. The non-transitory medium according to claim 1 , wherein the tool data includes an interference prohibition region in which interference of the peripheral workpiece with respect to the target workpiece is prohibited.

4. The non-transitory medium according to claim 3 , wherein the interference prohibition region is designated as a region obtained by setting a tool work position in which the tool performs work on the workpiece as a reference.

5. The non-transitory medium according to claim 4 , wherein the interference prohibition region is designated as a circular region or a rectangular region.

6. The non-transitory medium according to claim 1 , wherein the data structure further includes:

process data including a sequence of the image processing and a parameter setting corresponding to an environmental condition, and

the workpiece shape data for recognizing the target workpiece and the tool data for checking whether there is interference are usable in third different image-processing data for a different environmental condition other than the environmental condition.

7. The non-transitory medium according to claim 6 , wherein the environmental condition includes a supply method of the workpiece or a lighting condition of the workpiece.

8. An image-processing data creation method for creating image-processing data necessary for performing image processing on captured images of multiple workpieces when an articulated robot extracts a workable target workpiece from among multiple supplied workpieces, the method comprising:

creating workpiece shape data for recognizing the target workpiece by pattern matching;

creating tool data applicable to each of the multiple supplied workpieces for checking whether there is interference between a tool mounted on the articulated robot and a peripheral workpiece in advance;

creating the image-processing data by combining the workpiece shape data and the tool data; and

saving the image-processing data, wherein

the workpiece shape data for recognizing the target workpiece is usable in first different image-processing data for a different tool other than the tool, and

the tool data for checking whether there is interference is usable in second different image-processing data for a different workpiece than the target workpiece.

9. The image-processing data creation method according to claim 8 , wherein the workpiece shape data includes an outer shape of the workpiece and a tool work position at which the tool performs work on the workpiece.

10. The image-processing data creation method according to claim 8 , wherein the tool data includes an interference prohibition region in which interference of the peripheral workpiece with respect to the target workpiece is prohibited.

11. The image-processing data creation method according to claim 10 , wherein the interference prohibition region is designated as a region obtained by setting a tool work position in which the tool performs work on the workpiece as a reference.

12. The image-processing data creation method according to claim 11 , wherein the interference prohibition region is designated as a circular region or a rectangular region.

13. The image-processing data creation method according to claim 8 , further comprising:

creating process data including a sequence of the image processing and a parameter setting corresponding to an environmental condition; and

creating the image-processing data by combining the workpiece shape data, the tool data, and the process data,

wherein the workpiece shape data for recognizing the target workpiece and the tool data for checking whether there is interference are usable in third different image-processing data for a different environmental condition other than the environmental condition.

14. The image-processing data creation method according to claim 13 , wherein the environmental condition includes a supply method of the workpiece or a lighting condition of the workpiece.

15. The image-processing data creation method according to claim 8 , wherein the image-processing data is created before images of the target workpiece are captured for extraction processing to extract the workable target workpiece from among the multiple supplied workpieces.

16. The image-processing data creating method according to claim 8 , wherein creating the tool data includes creating tool data for each of a plurality of different types of tool.

17. The image-processing data creating method according to claim 8 , wherein creating the workpiece shape data includes creating workpiece shape data for each of a plurality of different types of workpiece.

18. The non-transitory medium according to claim 1 , wherein the tool data includes tool data for each of a plurality of different types of tool.

19. The non-transitory medium according to claim 1 , wherein the workpiece shape data includes workpiece shape data for each of a plurality of different types of workpiece.

20. The non-transitory medium according to claim 1 , wherein

the workpiece shape data for recognizing the target workpiece is usable without the tool data for checking whether there is interference in the first different image-processing data for the different tool other than the tool, and

the tool data for checking whether there is interference is usable without the workpiece shape data for recognizing the target workpiece in the second different image-processing data for the different workpiece other than the target workpiece.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 5, 2019
From: OISHI, NOBUO
To: FUJI CORPORATION
Reel/Frame 049958/0778 →
Continuity (1)
Related Publication 20200027205A1 · Jan 23, 2020
Cited By (1)
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