IP Library › Granted Patent US 11,453,129
Granted Patent B2
US 11,453,129 · App. 15/873,166 · Granted Sep 27, 2022

User assisting robot for shopping applications

Inventors: Stephanie Paepcke (Mountain View, CA); Tiffany L. Chen (San Jose, CA)
Assignee: TOYOTA RESEARCH INSTITUTE, INC.
B25J9/1697B25J9/1679B25J11/008B62B3/1472G05B19/4189G06F3/017G06K7/10861G06Q30/06G05B2219/40298G05B2219/45048G05B2219/45052
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Quick Facts
Patent No.
US 11,453,129
App. No.
15/873,166
Filed
Jan 17, 2018
Granted
Sep 27, 2022
Kind
B2
Examiner
JEN, MINGJEN
Art Unit
3664
USPC
700/259
Abstract

A robot system includes a holding compartment configured to transport one or more items and an electronic control unit having a processor and a non-transitory computer readable memory including a machine-readable instruction set. The robot system further includes a camera for capturing image data of an environment of the holding compartment and a robotic arm each communicatively coupled to the electronic control unit. The machine-readable instruction set causes the processor to receive image data of the environment of the holding compartment from the camera, determine a set of handling instructions for an item collected by the robotic arm, determine a location within the holding compartment for placing the item collected by the robotic arm based on the image data of the environment of the holding compartment and the set of handling instructions, and manipulate the robotic arm to place the item within the holding compartment at the determined location.

Claims (64)

1. A robot system comprising:

an electronic control unit comprising a processor and a non-transitory computer readable memory;

a holding compartment configured to transport one or more items;

a camera communicatively coupled to the electronic control unit for capturing image data of an environment of the holding compartment; and

a robotic arm communicatively coupled to the electronic control unit, wherein the electronic control unit is configured to:

receive image data of the environment of the holding compartment from the camera,

determine a set of handling instructions for an item collected by the robotic arm based on one or more attributes of the item, wherein the set of handling instructions define at least one of a handling or a storing requirement for the item,

determine a location within the holding compartment for placing the item collected by the robotic arm based on the image data of the environment of the holding compartment and the set of handling instructions, and

manipulate the robotic arm to place the item within the holding compartment at the determined location.

2. The robot system of claim 1 , wherein the camera further captures image data of a gesture and the electronic control unit is further configured to:

determine the meaning of the gesture, and

convert the meaning of the gesture into one or more signals for maneuvering at least the robotic arm.

3. The robot system of claim 1 , wherein one or more handling instructions of the set of handling instructions is based on a classification for the item and one or more handling instructions of the set of handling instructions specify one or more other classifications of items to store separately from the item.

4. The robot system of claim 1 , wherein the electronic control unit is further configured to:

receive a shopping list comprising a list of one or more items for the robotic arm to collect.

5. The robot system of claim 4 , wherein the electronic control unit is further configured to:

determine an order for collecting the one or more items on the shopping list based on the set of handling instructions for each of the one or more items on the shopping list.

6. The robot system of claim 4 , wherein the holding compartment and the robotic arm are coupled to a motorized base and the motorized base is communicatively coupled to the electronic control unit, and the electronic control unit is further configured to:

determine a route to a location for at least one item on the shopping list,

generate one or more signals to manipulate the motorized base to the location for the at least one item on the shopping list, and

generate one or more signals to manipulate the robotic arm to collect the item on the shopping list.

7. The robot system of claim 1 , further comprising a barcode scanner disposed on the robotic arm and communicatively coupled to the electronic control unit.

8. The robot system of claim 7 , wherein at least one of the barcode scanner and the camera communicate signals indicative of a barcode of the item to the electronic control unit, and the electronic control unit is further configured to:

determine an identification of the item, and

add the item to an electronic checkout list.

9. The robot system of claim 1 , wherein the holding compartment comprises a plurality of segmented compartments and at least one or the plurality of segmented compartments comprises at least one of a cold storage compartment and a warm storage compartment.

10. The robot system of claim 1 , wherein the holding compartment includes removable grocery bags.

11. A robot system comprising:

an electronic control unit comprising a processor and a non-transitory computer readable memory;

a holding compartment configured to transport one or more items;

a camera communicatively coupled to the electronic control unit for capturing image data of an environment of the holding compartment;

a robotic arm communicatively coupled to the electronic control unit and rotatably coupled to the holding compartment; and

a motorized base coupled to the robotic arm and the holding compartment, wherein the electronic control unit is configured to:

receive image data of the environment of the holding compartment from the camera,

receive image data of an item to be collected from the camera,

determine a set of handling instructions for the item based on the image data of the item received from the camera and on one or more attributes of the item, wherein the set of handling instructions define at least one of a handling or a storing requirement for the item,

determine a location within the holding compartment for placing the item collected by the robotic arm based on the image data of the environment of the holding compartment and the set of handling instructions, and

manipulate the robotic arm to position the item within the holding compartment at the determined location.

12. The robot system of claim 11 , wherein the camera further captures image data of a gesture and the electronic control unit is further configured to:

determine the meaning of the gesture, and

convert the meaning of the gesture into one or more signals for maneuvering at least the robotic arm.

13. The robot system of claim 11 , wherein one or more handling instructions of the set of handling instructions is based on a classification of the item and one or more handling instructions of the set of handling instructions specify one or more other classifications of items to store separately from the item.

14. The robot system of claim 11 , wherein the electronic control unit is further configured to:

receive a shopping list comprising a list of one or more items for the robotic arm to collect, and

determine an order for collecting the one or more items on the shopping list based on the set of handling instructions for each of the one or more items on the shopping list.

15. The robot system of claim 11 , wherein the holding compartment and the robotic arm are coupled to a motorized base and the motorized base is communicatively coupled to the electronic control unit, and the electronic control unit is further configured to:

receive a shopping list comprising a list of one or more items for the robotic arm to collect,

determine a route to a location for at least one item on the shopping list,

generate one or more signals to manipulate the motorized base to the location for the at least one item on the shopping list, and

generate one or more signals to manipulate the robotic arm to collect the item on the shopping list.

16. A method for storing an item, the method comprising:

receiving image data of an environment of a holding compartment from a camera;

determining a set of handling instructions for an item collected by a robotic arm based on one or more attributes of the item, wherein the set of handling instructions define at least one of a handling or a storing requirement for the item;

determining a location within the holding compartment for placing the item collected by the robotic arm based on the image data of the environment of the holding compartment and the set of handling instructions; and

manipulating the robotic arm to position the item at the determined location within the holding compartment.

17. The method of claim 16 , wherein the step of determining the set of handling instructions further comprises receiving the set of handling instructions from a database of handling instructions.

18. The method of claim 16 , further comprising:

receiving image data of a gesture from the camera,

determining the meaning of the gesture, and

converting the meaning of the gesture into one or more signals for maneuvering at least the robotic arm.

19. The method of claim 16 , wherein one or more handling instructions of the set of handling instructions is based on a classification of the item and the one or more handling instructions of the set of handling instructions specify one or more other classifications of items to store separately from the item.

20. The method of claim 16 , further comprising

receiving a shopping list comprising a list of one or more items for the robotic arm to collect, and

determining an order for collecting the one or more items on the shopping list based on the set of handling instructions for each of the one or more items on the shopping list.

Assignments (2)
CORRECTIVE ASSIGNMENT TO CORRECT THE THE APPLICATION NUMBER PREVIOUSLY RECORDED AT REEL: 062089 FRAME: 0069. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Dec 19, 2022
From: TOYOTA RESEARCH INSTITUTE, INC.
To: TOYOTA JIDOSHA KABUSHIKI KAISHA
Reel/Frame 062153/0783 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 17, 2018
From: PAEPCKE, STEPHANIE; CHEN, TIFFANY L.
To: TOYOTA RESEARCH INSTITUTE, INC.
Reel/Frame 044639/0837 →
Continuity (1)
Related Publication 20190217477A1 · Jul 18, 2019
Cited By (10)
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