Method for operating a bin storage system and robot vehicle
11794997 · 2023-10-24
Assignee
Inventors
Cpc classification
G06K17/00
PHYSICS
G06Q10/08
PHYSICS
B65G1/06
PERFORMING OPERATIONS; TRANSPORTING
B65G1/00
PERFORMING OPERATIONS; TRANSPORTING
B65G1/137
PERFORMING OPERATIONS; TRANSPORTING
G06Q10/087
PHYSICS
B66F9/06
PERFORMING OPERATIONS; TRANSPORTING
B66F9/07
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65G1/06
PERFORMING OPERATIONS; TRANSPORTING
B65G1/137
PERFORMING OPERATIONS; TRANSPORTING
B66F9/06
PERFORMING OPERATIONS; TRANSPORTING
B66F9/07
PERFORMING OPERATIONS; TRANSPORTING
G05B19/418
PHYSICS
G05D1/00
PHYSICS
G06Q10/08
PHYSICS
Abstract
A method of operating a bin storage system including a plurality of storage columns for the storage of a plurality of vertically-stacked storage bins, and a plurality of robot vehicles for transporting storage bins, the method includes: positioning a cavity of one of the plurality of robot vehicles such that it is aligned with one of the storage columns, receiving a storage bin from the storage column into the cavity, and moving the robot vehicle along the bin storage system, using a plurality of rolling members attached to the vehicle body about the cavity that are arranged for travelling in a first direction and a perpendicular second direction along the bin storage system.
Claims
1. A method of operating a bin storage system comprising a plurality of storage columns for storage of a plurality of vertically-stacked storage bins, and a plurality of robot vehicles for transporting storage bins, the method comprises: positioning a cavity of one of the plurality of robot vehicles such that the cavity is aligned with one of the storage columns, receiving a storage bin from the storage column into the cavity, and moving the robot vehicle along the bin storage system, using a plurality of rolling members attached to the robot vehicle that are arranged for travelling in a first direction and a perpendicular second direction along the bin storage system.
2. The method according to claim 1, wherein the receiving a storage bin from the storage column comprises: descending a lifting device of the robot vehicle into the storage column, engaging a storage bin with the lifting device, and lifting the lifting device of the robot vehicle with the storage bin from the storage column into the cavity.
3. The method according to claim 1, wherein the cavity is capable of receiving only one storage bin at any time.
4. The method according to claim 1, wherein the cavity is centrally arranged when viewing from a bottom of the robot vehicle.
5. The method according to claim 1, wherein the cavity displays a downwardly facing opening for the storage bin.
6. The method according to claim 1, wherein at least a pair of rolling members are arranged symmetrically around the cavity.
7. A robot vehicle for transporting storage bins in a bin storage system, comprising: a cavity arranged to receive a storage bin from a storage column, a plurality of rolling members arranged to allow the robot vehicle to travel in a first direction and a perpendicular second direction along an underlying vehicle support of the bin storage system, and means for reversibly and selectively displacing a first set of rolling members and a second set of rolling members away from the underlying vehicle support of the storage system during a change of vehicle direction between the first direction and the second direction.
8. The robot vehicle according to claim 7, wherein the cavity is centrally arranged in the robot vehicle.
9. The robot vehicle according to claim 7, wherein the cavity displays a downwardly facing opening for the storage bin.
10. The robot vehicle according to claim 7, wherein at least a pair of rolling members are arranged symmetrically around the cavity.
11. The robot vehicle according to claim 7, wherein the bin storage system comprises: three-dimensional storage structure comprising a plurality of pillars which are positioned with internal distances and in a rectangular arrangement, wherein the rectangular arrangement of the pillars define the storage columns for the storage of a plurality of vertically-stacked storage bins, and supporting rails arranged in a two-dimensional matrix on the pillars, said supporting rails arranged in a first direction and a second direction orthogonal to the first direction, the supporting rails further defining openings for the storage columns.
12. The robot vehicle according to claim 11, wherein the plurality of rolling members are arranged for travelling along a plurality of rolling tracks of the bin storage system, and the supporting rails define the rolling tracks.
13. A robot vehicle for transporting storage bins in a bin storage system, comprising: a cavity arranged to receive a storage bin from a storage column, a plurality of rolling members arranged to allow the robot vehicle to travel in a first and second direction along an underlying vehicle support of the bin storage system, wherein the rolling members, in at least one of the first and second direction, are arranged at an outermost periphery of the robot vehicle, and means for reversibly and selectively displacing a first set of rolling members and a second set of rolling members away from the underlying vehicle support of the storage system during a change of vehicle direction between the first direction and the second direction.
14. The robot vehicle according to claim 13, wherein all components of the robot vehicle, except for the rolling members, do not extend beyond any of the rolling members.
15. The robot vehicle according to claim 13, wherein the cavity comprises a downwardly facing opening of essentially a same width and length as the openings for the storage columns.
16. The robot vehicle according to claim 13, wherein a single robot vehicle essentially covers a single opening while retrieving a storage bin, whereby a second robot vehicle traverses an adjacent column unhindered by the first robot vehicle.
17. A computer program product for a control unit in a bin storage system comprising: a plurality of storage columns for storage of a plurality of vertically-stacked storage bins, and a plurality of robot vehicles for transporting storage bins, the computer program product comprises instructions that when executed on the control unit performs a method of operating the bin storage system, the method comprises: positioning a cavity of one of the plurality of robot vehicles such that the cavity is aligned with one of the storage columns, receiving a storage bin from the storage column into the cavity, and moving the robot vehicle along the bin storage system, using a plurality of rolling members attached to the robot vehicle that are arranged for travelling in a first direction and a perpendicular second direction along the bin storage system.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
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(13) The structural principles of a grid assembly comprising a bin storing structure or grid 15, integrated supporting rails 13 constituting the vehicle support 14 and a grid supporting base 76 are illustrated in
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(15) To better illustrate the movement of the robot 1 on the supporting rails 13 constituting the vehicle support 14 some exemplary positions of robots 1 on a grid assembly is illustrated in
(16) All operations of the robot 1 are controlled by wireless communication means 75 and remote control units. This includes control of the robot movement, the vehicle lifting device and the position measurements.
(17) In the preceding description, various aspects of the apparatus according to the invention have been described with reference to the illustrative embodiment. For purposes of explanation, specific numbers, systems and configurations were set forth in order to provide a thorough understanding of the apparatus and its workings. However, this description is not intended to be construed in a limiting sense. Various modifications and variations of the illustrative embodiment, as well as other embodiments of the apparatus, which are apparent to persons skilled in the art to which the disclosed subject matter pertains, are deemed to lie within the scope of the present invention.
LIST OF REFERENCE NUMERALS/LETTERS
(18) 1 Remotely operated vehicle/robot 2 Storage bin 3 Storage system 4 Vehicle body/framework 5 First section (of vehicle body)/component section/side parts 5a First section, left 5b First section, right 6 Vehicle driving means/motor unit 7 Vehicle storage space/second part/cavity/centrally arranged cavity 8 Storage column 8a Central storage column 8b Adjacent storage column 9 Vehicle lifting device 10 First set of vehicle rolling means/First set of wheels 11 Second set of vehicle rolling means/Second set of wheels 12 Bin receiving opening 13 Supporting rail 14 Vehicle support 15 Bin storing structure/grid 16 Position sensing means/position sensor 17 Left outer lateral border area of vehicle support/left border mesh 18 Right outer lateral border area of vehicle support/right border mesh 50 Bin lift device 60 Delivery station/port 70 Yoke/overhang 72 Top lid 73 Enclosing cover 74 Handles 75 Transmission means/control panel/wireless communication means 76 Grid supporting base