IP Library › Granted Patent US 9,776,794
Granted Patent B2
US 9,776,794 · App. 15/376,251 · Granted Oct 3, 2017

Storage and retrieval system case unit detection

Inventors: Robert Sullivan (Wilmington, MA); Stephen C. Toebes (Chelmsford, MA)
Assignee: Symbotic, LLC
B65G1/0492B65G1/1371B65G1/1373G06Q10/087
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Quick Facts
Patent No.
US 9,776,794
App. No.
15/376,251
Filed
Dec 12, 2016
Granted
Oct 3, 2017
Kind
B2
Art Unit
3651
USPC
700/214
Abstract

An automated storage and retrieval system including a storage structure with storage racks having a seating surface configured to support case units where a position of each case unit is non-deterministic for each storage location on the storage racks, each case unit has a predetermined storage position and a controller is configured to determine the predetermined storage position, a picking aisle configured to provide access to the case units within the storage structure, and a seismic disturbance restorative system including seismic disturbance motions sensors disposed on the storage racks, a seismic disturbance control module in communication with the seismic disturbance sensors and configured to identify a seismic disturbance, and an automated case mapper configured to traverse the picking aisle, the automated case mapper being in communication with and initialized by the seismic disturbance control module to identify a seated position of at least one case unit within the storage structure.

Claims (33)

1. A warehouse automated storage and retrieval system for transport and storage of cases of wares in a ware case storage room, the warehouse automated storage and retrieval system comprising:

a storage structure with an array of storage locations distributed on at least one storage shelf having a seating surface configured to support ware case units where a position of each ware case unit is non-deterministic for each storage location on the at least one storage shelf;

a controller, where each case unit has a predetermined storage position in which the ware case unit is seated on the at least one storage shelf and the controller is configured to determine the predetermined storage position; and

a disturbance restorative system including

at least one disturbance detection sensor disposed on the at least one storage shelf,

a disturbance control module in communication with the at least one disturbance detection sensor and configured to identify a disturbance, and

wherein the disturbance restorative system is configured so that the disturbance restorative system initializes a case mapper of the disturbance restorative system in response to the disturbance control module, wherein an automated guided vehicle within the storage structure traverses the storage structure relative to the at least one storage shelf to identify a seated position of at least one ware case unit within the storage structure.

2. The warehouse automated storage and retrieval system of claim 1 , wherein the disturbance control module is further configured to compare the identified seated position of the at least one ware case unit, determined with the automated guided vehicle and the predetermined position of the at least one ware case unit, and identify a variance between the identified seated position of the at least one ware case unit and the predetermined position of the at least one ware case unit.

3. The warehouse automated storage and retrieval system of claim 2 , wherein the disturbance control module is further configured to generate a command with information for ware case unit position correction based on a variance type.

4. The warehouse automated storage and retrieval system of claim 1 , wherein the ware case units are positioned in the at least one storage shelf in a close packed spacing.

5. The warehouse automated storage and retrieval system of claim 1 , wherein the controller is configured to dynamically allocate each ware case unit into a respective predetermined dynamically allocated storage position.

6. The warehouse automated storage and retrieval system of claim 5 , wherein the controller is further configured to effect correction of a position of the at least one ware case unit by dynamically updating the predetermined dynamically allocated storage position of the at least one ware case unit with a respective identified seated position of each ware case unit.

7. The warehouse automated storage and retrieval system of claim 5 , wherein the controller is further configured to effect correction of a position of the at least one ware case unit by commanding the automated guided vehicle to pick and reposition the at least one ware case unit at a respective dynamically allocated storage position or move the at least one ware case unit to a respective different dynamically allocated storage position.

8. The warehouse automated storage and retrieval system of claim 5 , wherein the disturbance control module is further configured to compare the identified seated position of the at least one ware case unit, determined with the automated guided vehicle and the predetermined dynamically allocated storage position of the at least one ware case unit, and identify a variance between the identified seated position of the at least one ware case unit and the predetermined dynamically allocated storage position of the at least one ware case unit.

9. The warehouse automated storage and retrieval system of claim 1 , wherein the automated guided vehicle is configured to pick and place ware case units at storage locations within the storage structure.

10. The warehouse automated storage and retrieval system of claim 1 , wherein the controller is further configured to effect correction of a position of the at least one ware case unit by providing the location of the at least one ware case unit to an operator of the warehouse automated storage and retrieval system for manual removal or repositioning of the at least one ware case unit.

11. The warehouse automated storage and retrieval system of claim 1 , wherein the automated guided vehicle traverses the storage structure to identify the seated position of the at least one ware case unit coincident with the automated guided vehicle traversing the storage structure relative to the at least one storage shelf for picking and/or placing of another ware case unit at another storage location.

12. A method for transporting and storing cases of wares in a ware case storage room with a warehouse automated storage and retrieval system, the method comprising:

providing a storage structure with an array of storage locations distributed on at least one storage shelf having a seating surface configured to support ware case units where a position of each ware case unit is non-deterministic for each storage location on the at least one storage shelf;

determining, with a controller, a predetermined storage position of each ware case unit, where each ware case unit has a respective predetermined storage position in which the ware case unit is seated on the at least one storage shelf;

identifying a disturbance, with a disturbance control module of a disturbance restorative system;

providing at least one disturbance detection sensor disposed on the at least one storage shelf, where the disturbance control module is in communication with the at least one disturbance detection sensor; and

initializing a case mapper of the disturbance restorative system in response to the disturbance control module and identifying a seated position of at least one ware case unit within the storage structure with an automated guided vehicle within the storage structure traversing the storage structure relative to the at least one storage shelf.

13. The method of claim 12 , further comprising comparing, with the disturbance control module, the identified seated position of the at least one ware case unit, determined with the automated guided vehicle and the predetermined position of the at least one ware case unit, and identifying a variance between the identified seated position and the predetermined position of the at least one ware case unit.

14. The method of claim 13 , further comprising generating, with the disturbance control module, a command with information for ware case unit position correction based on a variance type.

15. The method of claim 12 , wherein the ware case units are positioned in the at least one storage shelf in a close packed spacing.

16. The method of claim 12 , further comprising dynamically allocating, with the controller, each ware case unit into a respective predetermined dynamically allocated storage position.

17. The method of claim 16 , further comprising effecting, with the controller, correction of a position of the at least one ware case unit by dynamically updating the predetermined dynamically allocated storage position of the at least one ware case unit with a respective identified seated position of each ware case unit.

18. The method of claim 16 , further comprising effecting, with the controller, correction of a position of the at least one ware case unit by commanding the automated guided vehicle to pick and reposition the at least one ware case unit at a respective dynamically allocated storage position or move the at least one ware case unit to a respective different dynamically allocated storage position.

19. The method of claim 16 , further comprising comparing, with the disturbance control module, the identified seated position of the at least one ware case unit, determined with the automated guided vehicle and the predetermined dynamically allocated storage position of the at least one ware case unit, and identify a variance between the identified seated position and the predetermined dynamically allocated storage position of the at least one ware case unit.

20. The method of claim 12 , wherein the automated guided vehicle is configured to pick and place ware case units at storage locations within the storage structure.

21. The method of claim 12 , further comprising effecting, with the controller, correction of a position of the at least one ware case unit by providing the location of the at least one ware case unit to an operator of the warehouse automated storage and retrieval system for manual removal or repositioning of the at least one ware case unit.

22. The method of claim 12 , wherein the automated guided vehicle traverses the storage structure to identify the seated position of the at least one ware case unit coincident with the automated guided vehicle traversing the storage structure relative to the at least one storage shelf for picking and/or placing of another ware case unit at another storage location.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 12, 2016
From: SULLIVAN, ROBERT; TOEBES, STEPHEN C.
To: SYMBOTIC, LLC
Reel/Frame 040715/0897 →
Continuity (5)
Continuation 15007070 · Jan 26, 2016
Continuation 14618566 · Feb 10, 2015
Continuation 13608877 · Sep 10, 2012
Provisional Application 61533048 · Sep 9, 2011
Related Publication 20170088354A1 · Mar 30, 2017