IP Library Granted Patent US 10,646,898
Granted Patent B2
US 10,646,898 · App. 16/001,010 · Granted May 12, 2020

System and method for identifying and transferring parcels from a first conveyor to a second conveyor

Inventors: Thomas Anthony Hillerich, Jr. (Louisville, KY); Michael Alan McCue (Louisville, KY); Gregory Robert Sturm (Simpsonville, KY); David W. Caldwell, II (Louisville, KY); Derek Robert Sturm (Louisville, KY)
Assignee: Material Handling Systems, Inc.
B07C5/3422B07C3/02B07C5/36B07C5/362
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Quick Facts
Patent No.
US 10,646,898
App. No.
16/001,010
Granted
May 12, 2020
Kind
B2
Abstract

A system for identifying and transferring parcels includes a robot singulator configured to engage and transfer individual parcels in a bulk flow of multiple parcels on a first conveyor to a singulated stream of parcels on a second conveyor. The system further includes a vision and control subsystem, with a first camera for acquiring image data of the bulk flow of multiple parcels, and a computer that receives and processes the image data to identify and segment individual parcels, and then communicates instructions to the robot singulator to engage and transfer each of the individual parcels to the second conveyor. The system may further include a second camera for acquiring image data of the individual parcels to confirm placement on the second conveyor. The system may further include first and second indexing conveyors controlled by the vision and control subsystem for delivering parcels to the robot singulator.

Claims (44)

1. A system for identifying and transferring parcels, comprising:

a first conveyor carrying a bulk flow of multiple parcels;

an unstacking conveyor, which receives the bulk flow of multiple parcels from the first conveyor, wherein the unstacking conveyor has an upward incline, such that gravitational force causes certain parcels in the bulk flow of multiple parcels to unstack;

an indexing conveyor positioned below a distal end of the unstacking conveyor that receives the bulk flow of multiple parcels from the unstacking conveyor and is selectively activated and deactivated to advance the bulk flow of multiple parcels, while creating gaps between parcels in the bulk flow;

a robot singulator configured to engage and transfer individual parcels in the bulk flow of multiple parcels to a second conveyor; and

a vision and control subsystem, including

a first camera for acquiring image data of the bulk flow of multiple parcels, and

a computer including a processor for executing instructions stored in a memory component to (i) receive and process the image data from the first camera to identify and segment individual parcels in the bulk flow of multiple parcels, (ii) communicate instructions to the robot singulator to engage and transfer each of the individual parcels to the second conveyor; and (iii) communicate instructions to the indexing conveyor to selectively advance the bulk flow of multiple parcels toward the robot singulator.

2. The system as recited in claim 1 , wherein the robot singulator includes an end effector with a means for engaging a parcel mounted on a framework, which is controlled to move and position the end effector.

3. The system as recited in claim 2 , wherein the framework has six degrees of freedom.

4. The system as recited in claim 1 , wherein the vision and control subsystem includes a second camera for acquiring image data of the individual parcels after placement on the second conveyor, and wherein the computer also executes instructions to (iv) receive and process the image data from the second camera to confirm placement of each individual parcel on the second conveyor.

5. The system as recited in claim 1 , and further comprising:

a second indexing conveyor interposed between the indexing conveyor and the robot singulator, wherein movement of the second indexing conveyor is also controlled by the vision and control subsystem to selectively advance the bulk flow of multiple parcels toward the robot singulator.

6. The system as recited in claim 1 , wherein movement of the unstacking conveyor is also controlled by the vision and control subsystem.

7. A system for identifying and transferring parcels, comprising:

a first conveyor carrying a bulk flow of multiple parcels;

an unstacking conveyor, which receives the bulk flow of multiple parcels from the first conveyor, wherein the unstacking conveyor has an upward incline, such that gravitational force causes certain parcels in the bulk flow of multiple parcels to unstack;

an indexing conveyor positioned below a distal end of the unstacking conveyor that receives the bulk flow of multiple parcels from the unstacking conveyor and is selectively activated and deactivated to advance the bulk flow of multiple parcels, while creating gaps between parcels in the bulk flow;

a robot singulator configured to engage and transfer individual parcels in the bulk flow of multiple parcels to a second conveyor; and

a vision and control subsystem, including

a first camera for acquiring image data of the bulk flow of multiple parcels, and

a computer including a processor for executing instructions stored in a memory component to (i) receive and process the image data from the first camera to generate a three-dimensional representation of the parcels; (ii) identify individual parcels in the three-dimensional representation of the parcels; (iii) generate a ranked order of individual parcels as identified in the three-dimensional representation of the parcels for acquisition; (iv) communicate instructions to the robot singulator to engage and transfer each of the individual parcels to the second conveyor in the ranked order; and (v) communicate instructions to the indexing conveyor to selectively advance the bulk flow of multiple parcels toward the robot singulator.

8. The system as recited in claim 7 , wherein the robot singulator includes an end effector with a means for engaging a parcel mounted on a framework, which is controlled to move and position the end effector.

9. The system as recited in claim 8 , wherein the framework has six degrees of freedom.

10. The system as recited in claim 7 , wherein the vision and control subsystem includes a second camera for acquiring image data of the individual parcels after placement on the second conveyor, and wherein the computer also executes instructions to (vi) receive and process the image data from the second camera to confirm placement of each individual parcel on the second conveyor.

11. The system as recited in claim 7 , wherein the first camera of the vision and control subsystem acquires both two-dimensional image data and three-dimensional image data, and wherein the two-dimensional image data and the three-dimensional image data are transformed to a common coordinate system to generate the three-dimensional representation of the parcels.

12. The system as recited in claim 7 , and further comprising:

a second indexing conveyor interposed between the indexing conveyor and the robot singulator, wherein movement of the second indexing conveyor is also controlled by the vision and control subsystem to selectively advance the bulk flow of multiple parcels toward the robot singulator.

13. The system as recited in claim 7 , wherein movement of the unstacking conveyor is also controlled by the vision and control subsystem.

14. A system for identifying and transferring parcels, comprising:

a bulk flow conveyor carrying a bulk flow of parcels;

multiple singulation stations, each of the multiple singulation stations receiving a volume of parcels from the bulk flow conveyor, and each of the multiple singulation stations including

an induction conveyor,

an unstacking conveyor, which receives the volume of parcels from the bulk flow conveyor, wherein the unstacking conveyor has an upward incline, such that gravitational force causes certain parcels in the volume of parcels to unstack,

an indexing conveyor positioned below a distal end of the unstacking conveyor that receives the volume of parcels from the unstacking conveyor and is selectively activated and deactivated to advance the volume of parcels, while creating gaps between parcels,

a robot singulator configured to engage and transfer each parcel in the volume of parcels to the induction conveyor, and

a vision and control subsystem, including (a) a first camera for acquiring image data of the volume of parcels, and (b) a computer including a processor for executing instructions stored in a memory component to (i) receive and process the image data from the first camera to generate a three-dimensional representation of the volume of parcels; (ii) identify individual parcels in the three-dimensional representation of the volume of parcels; (iii) generate a ranked order of individual parcels as identified in the three-dimensional representation of the volume of parcels for acquisition; (iv) communicate instructions to the robot singulator to engage and transfer each of the individual parcels to the induction conveyor in the ranked order; and (v) communicate instructions to the indexing conveyor to selectively advance the volume of parcels toward the robot singulator.

15. The system as recited in claim 14 , wherein each of the multiple singulation stations further includes:

a second indexing conveyor interposed between the indexing conveyor and the robot singulator, wherein movement of the second indexing conveyor is also controlled by the vision and control subsystem to selectively advance the volume of parcels toward the robot singulator.

16. The system as recited in claim 14 , wherein movement of each unstacking conveyor is also controlled by the vision and control subsystem.

17. The system as recited in claim 14 , and further comprising a sorter configured to receive parcels from the induction conveyor of each of the multiple singulation stations.

18. The system as recited in claim 14 , wherein the robot singulator in each of the multiple singulation stations includes an end effector with a means for engaging a parcel mounted on a framework, which is controlled to move and position the end effector.

19. The system as recited in claim 18 , wherein the framework has six degrees of freedom.

20. The system as recited in claim 14 , wherein the vision and control subsystem in each of the multiple singulation station includes a second camera for acquiring image data of the individual parcels after placement on the induction conveyor, and wherein the computer also executes instructions to (vi) receive and process the image data from the second camera to confirm placement of each individual parcel on the induction conveyor.

Assignments (5)
SECURITY INTEREST Recorded Jul 10, 2026
From: FORTNA INC.; FORTNA EQUIPMENT, LLC; FORTNA SYSTEMS, INC.
To: WILMINGTON SAVINGS FUND SOCIETY, FSB
Reel/Frame 075234/0044 →
SECURITY INTEREST Recorded Apr 10, 2025
From: FORTNA SYSTEMS, INC.
To: ARES AGENT SERVICES, L.P., AS ADMINISTRATIVE AND COLLATERAL AGENT
Reel/Frame 070795/0675 →
CHANGE OF NAME Recorded Nov 14, 2024
From: MATERIAL HANDLING SYSTEMS, INC.
To: FORTNA SYSTEMS, INC.
Reel/Frame 069361/0776 →
SECURITY INTEREST Recorded Jun 1, 2022
From: OPTRICITY CORPORATION; MHS EQUIPMENT, LLC; MATERIAL HANDLINGS SYSTEMS, INC.; MHS CONVEYOR CORP.
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 060075/0344 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 12, 2018
From: HILLERICH, THOMAS ANTHONY, JR.; MCCUE, MICHAEL ALAN; STURM, GREGORY ROBERT; CALDWELL, DAVID W., II; STURM, DEREK ROBERT
To: MATERIAL HANDLING SYSTEMS, INC.
Reel/Frame 047151/0304 →
Cited By (10)
US 1,131,975 US 12,286,302 US 12,330,886 US 12,350,841 US 12,365,549 US 12,365,550 US 12,378,083 US 12,503,313 US 12,678,938 US 12,709,490