IP Library Granted Patent US 11,377,309
Granted Patent B2
US 11,377,309 · App. 16/753,656 · Granted Jul 5, 2022

Transporting device, storage system and method of relocating a transporting device

Inventors: Andrew John Ingram-Tedd (Hatfield, GB); David Sharp (Hatfield, GB); Joseph Zammit (Hatfield, GB); Ben Thomas (Hatfield, GB); Sean Clark (Hatfield, GB); Graham Deacon (Hatfield, GB)
Assignee: OCADO INNOVATION LIMITED
B65G54/02B65G1/04B65G1/0478B65G1/065B65G1/10B65G1/137B65G1/1371B65G35/06B65G2203/0266B65G2203/0283
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Quick Facts
Patent No.
US 11,377,309
App. No.
16/753,656
Granted
Jul 5, 2022
Kind
B2
Abstract

A storage system as disclosed can maximize storage capacity whilst remaining scalable. A transporting device is arranged to form a cluster with a reconfigurable physical topology. A transporting device can cooperate with a portion of a surface, and with at least one other transporting device in a cluster with a reconfigurable physical topology. An item receiving space and a relocating unit permit relocation of the transporting device within the cluster by way of interaction with the portion of the surface.

Claims (80)

1. A transporting device arranged to cooperate with a portion of a surface, and the transporting device arranged to cooperate with at least one other transporting device in a cluster with a reconfigurable physical topology, the transporting device comprising:

an item receiving space;

a relocating unit configured to provide relocation of the transporting device within the cluster by way of interaction with a portion of the surface; and

an engagement unit configured to engage with the at least one other transporting device.

2. The transporting device according to claim 1 , wherein the transporting device is individually addressable within the cluster.

3. The transporting device according to claim 1 , wherein the transporting device is arranged to be driven from within the cluster.

4. The transporting device according to claim 1 , wherein the transporting device is arranged to move relative to the at least one other transporting device in the cluster.

5. The transporting device according to claim 1 , wherein the transporting device is a container.

6. The transporting device according to claim 1 , wherein the relocating unit comprises at least one of:

a mechanical mechanism;

a non-contacting mechanism;

a magnetic mechanism; or

an electromagnetic mechanism.

7. The transporting device according to claim 6 , wherein the magnetic mechanism comprises at least one of:

a plurality of permanent magnets;

a plurality of moving magnets;

a material of a predetermined magnetic permeability; or

an array of magnets.

8. The transporting device according to claim 3 , wherein the mechanical mechanism comprises at least one of:

wheels;

cogs; or

omniwheels.

9. A storage system comprising:

a surface; and

a plurality of transporting devices, wherein each transporting device is configured to cooperate with a portion of the surface and each transporting device is arranged to cooperate with at least one other transporting device in the plurality of transporting devices, each transporting device including:

an item receiving space;

a relocating unit configured to provide relocation of the transporting device within the cluster by way of interaction with a portion of the surface; and

an engagement unit configured to engage with the at least one other transporting device,

wherein the plurality of transporting devices are arranged in a three-dimensional cluster with a reconfigurable physical topology.

10. The storage system according to claim 9 , wherein the portion of the surface is configured to relocate at least one of the plurality of transporting devices.

11. The storage system according to claim 9 , comprising:

a controller arranged to determine a path for at least one transporting device of the plurality of transporting devices from a start location to a destination location and to cause movement of the at least one transporting device using the determined path.

12. The storage system according to claim 9 , wherein the surface comprises:

a communication unit arranged to receive at least one instruction.

13. The storage system according to claim 12 , wherein the portion of the surface is configured to relocate a transporting device of the plurality of transporting devices within the three-dimensional cluster in response to an instruction received by the communication unit.

14. The storage system according to claim 12 , comprising at least one of:

a pick station disposed adjacent to the cluster and configured to communicate with the cluster;

a decant station disposed adjacent the cluster and configured to communicate with the cluster;

a load station disposed adjacent the cluster and configured to communicate with the cluster; or

an unload station disposed adjacent the cluster and configured to communicate with the cluster.

15. A transporting device configured to cooperate with at least one other transporting device in a cluster with a reconfigurable physical topology, the transporting device comprising:

an item receiving space;

a relocating unit configured to permit relocation of the transporting device within the cluster by way of interaction with the at least one other transporting device; and

an engagement unit configured to engage with the at least one other transporting device.

16. The transporting device according to claim 15 , wherein the relocating unit comprises at least one:

a mechanical mechanism;

a non-contacting mechanism;

a magnetic mechanism; or

an electromagnetic mechanism.

17. The transporting device according to claim 15 , wherein the transporting device comprises:

a communication unit arranged to receive at least one instruction.

18. The transporting device according to claim 17 , wherein the relocating unit is configured to relocate the transporting device within the cluster in response to an instruction received by the communication unit.

19. The transporting device according to claim 15 , wherein the relocating unit comprises:

a first magnetic wheel on a first face of the transporting device, the first magnetic wheel configured to rotate in a first direction; and

a second magnetic wheel on a second face of the transporting device, the second magnetic wheel configured to rotate in a second direction,

wherein the first direction and the second direction are perpendicular to each other, and

wherein the first magnetic wheel is configured to interact with a first magnetic track on a face of a first neighbouring transporting device and the second magnetic wheel is configured to interact with a second magnetic track on a face of a second neighbouring transporting device.

20. The transporting device according to claim 19 , wherein the transporting device comprises:

a third magnetic track on a third face of the transporting device, the third magnetic track configured in the second direction; and

a fourth magnetic track on a fourth face of the transporting device, the fourth magnetic track configured in the first direction.

wherein the third magnetic track is configured to interact with a third magnetic wheel on a face of a third neighbouring transporting device, and

the fourth magnetic track is configured to interact with a fourth magnetic wheel on a face of a fourth neighbouring transporting device.

21. The transporting device according to claim 4 , wherein the first face of the transporting device includes a fifth magnetic track, the second face of the transporting device includes a fourth magnetic track, the third face of the transporting device includes a first magnetic wheel, and the fourth face of the transporting device includes a second magnetic wheel.

22. A storage system comprising:

a plurality of transporting devices, wherein each transporting device is is configured to cooperate with a portion of the surface configured to cooperate with at least one other transporting device in the plurality of transporting devices, each transporting device including:

an item receiving space;

a relocating unit configured to provide relocation of the transporting device within the cluster by way of interaction with a portion of the surface; and

an engagement unit configured to engage with the at least one other transporting device;

wherein the plurality of transporting devices are configured in a three-dimensional cluster with a reconfigurable physical topology.

23. The storage system according to claim 22 , comprising:

a controller configured to determine a path for at least one transporting device of the plurality of transporting devices from a start location to a destination location and to cause movement of the at least one transporting device using the determined path.

24. The storage system according to claim 22 , comprising at least one of:

a pick station disposed adjacent to the cluster and configured to communicate with the cluster;

a decant station disposed adjacent the cluster and configured to communicate with the cluster;

a load station disposed adjacent the cluster and configured to communicate with the cluster; or

an unload station disposed adjacent the cluster and configured to communicate with the cluster.

25. A method of relocating a transporting device arranged in a cluster with a reconfigurable physical topology, the method comprising:

causing the transporting device to cooperate with at least one other transporting device in the cluster;

relocating the transporting device within the cluster by way of interaction between the transporting device and the at least one other transporting device; and

engaging the transporting device with the at least one other transporting device.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 3, 2020
From: INGRAM-TEDD, ANDREW JOHN; SHARP, DAVID; ZAMMIT, JOSEPH; THOMAS, BEN; CLARK, SEAN; DEACON, GRAHAM
To: OCADO INNOVATION LIMITED
Reel/Frame 052308/0700 →
Priority Claims (1)
GB 1716204 · Oct 4, 2017 · national
Continuity (1)
Related Publication 20200324971A1 · Oct 15, 2020
Cited By (4)
US 12,195,274 US 12,252,340 US 12,282,321 US 12,474,698