Patent classifications
G05B2219/39107
PICK AND PLACE SYSTEM AND METHODS FOR USE
A pick and place system and methods of use are presented. The pick and place system comprises a backing plate, a porous facesheet, and a flow generator. The backing plate is configured to direct air flow within the pick and place system. The porous facesheet is secured to the backing plate. The flow generator is configured to provide an air flow between the backing plate and the porous facesheet.
OVERRIDING CONTROL OF MOTORIZE TRANSPORT UNIT SYSTEMS, DEVICES AND METHODS
Some embodiments include apparatuses providing control over movement of motorized transport units at a retail facility, comprising: multiple self-propelled motorized transport units; a wireless communication network; and a central computer system, wherein the central computer system comprises: a transceiver; a control circuit; and a memory storing computer instructions that when executed cause the control circuit to: receive an override command, from a worker associated with the retail facility, to cause a first motorized transport unit of the multiple motorized transport units to implement one or more actions; confirm a valid authorization of the worker to override one or more operating limits of the first motorized transport unit; and override the one or more operating limits and communicate one or more instructions to the first motorized transport unit configured to cause the first motorized transport unit to implement the one or more actions in accordance with the override command.
Conveying system
A conveying system includes a robot apparatus, a second conveyor, and a controller. The robot apparatus has a holding unit configured to hold a package, and an arm configured to move the holding unit, and is located next to a first conveyor extending in a first direction, in a second direction, which is different from the first direction. The second conveyor is located next to the robot apparatus, in the first direction, and is configured to convey the package in the second direction toward the first conveyor. The controller is configured to control the robot apparatus so as to retrieve the package from an accumulation unit for the package and place the retrieved package on the second conveyor.
CONTROL DEVICE AND METHOD FOR ITEM VERIFICATION
A control device is provided to more quickly and efficiently verify which item has been grasped by a robot system whilst also providing a solution which is scalable. Verification of the item which has been grasped is achieved by measuring a dynamics property of the item. A control unit for operation with a robot system a sensor unit, the robot system arranged to grasp an item from a container. The control unit includes a verification unit arranged to receive identifying information of an item expected to be in the container, receive information from the sensor unit indicative of a dynamics property of the item grasped by the robot system and verify that the item grasped by the robot system matches the item expected to be in the container based on the received identifying information and the received dynamics property information.
RECHARGING APPARATUS AND METHOD
Methods and apparatuses are provided for use in monitor power levels at a shopping facility, comprising: central control system separate and distinct from a plurality of self-propelled motorized transport units, wherein the central control system comprises: a transceiver configured to wirelessly receive communications from the plurality of motorized transport units; a control circuit coupled with the transceiver; and a memory coupled to the control circuit and storing computer instructions that cause the control circuit to: identify available stored power levels at each of the plurality of motorized transport units; identify an available recharge station, of a plurality of recharge stations distributed throughout the shopping facility, at least relative to a location of the first motorized transport unit intended to be subjected to recharging; and wirelessly communicate one or more instructions to cause the first motorized transport unit to cooperate with an available recharge station.
Systems, devices and methods of providing customer support in locating products
Some embodiments provide a system comprising: multiple self-propelled motorized transport units; a wireless communication network; and a central computer comprising: a transceiver, a control circuit and a memory storing computer instructions that when executed by the control circuit cause the control circuit to: receive a request from a customer requesting location information for a requested item; identify the requested item is a category of items, and identify category location information; communicate routing instructions to the motorized transport unit based on the category location information causing the motorized transport unit to initiate physical movement; and communicate to the motorized transport unit a species clarification inquiry instruction configured to cause the motorized transport unit, while implementing routing instructions to move toward the category location, to present a clarification inquiry to the customer seeking clarification in narrowing the identified category to one or more products categorized within the identified category.
Robotic system control method and controller
The present disclosure provides a control method of a robotic system that implements a high degree of cooperation between units including a robot and increases a storage efficiency of an operation object sufficiently. A control method includes: deriving an approach location at which the end effector grips an operation object; deriving a scan location for scanning an identifier of the operation object; and based on the approach location and the scan location, creating or deriving a control sequence to instruct the robot to execute the control sequence. The control sequence includes (1) gripping the operation object from a start location; (2) scanning an identifier of the operation object with a scanner located between the start location and a task location; (3) temporarily releasing the operation object from the end effector and regripping the operation object by the end effector to be shifted, at a shift location, when a predetermined condition is satisfied; and (4) moving the operation object to the task location.
ROBOTIC SYSTEM WITH PIECE-LOSS MANAGEMENT MECHANISM
A method for operating a robotic system that includes calculating a base motion plan, wherein the base motion plan includes a sequence of commands or settings, or a combination thereof, that operates a robotic arm and a gripper to transfer a target object from a start location to a task location; receiving a contact measure while executing the base motion plan, wherein the contact measure represents an amount of grip of the gripper on the target object; and generating one or more actuator commands/settings that deviate from the base motion plan when the contact measure fails to satisfy a threshold, wherein the one or more actuator commands/settings thereof are configured to operate the robotic arm, the gripper, or a combination thereof to execute one or more response actions not included in the base motion plan.
Recharging apparatus and method
Methods and apparatuses are provided for use in monitor power levels at a shopping facility, comprising: central control system separate and distinct from a plurality of self-propelled motorized transport units, wherein the central control system comprises: a transceiver configured to wirelessly receive communications from the plurality of motorized transport units; a control circuit coupled with the transceiver; and a memory coupled to the control circuit and storing computer instructions that cause the control circuit to: identify available stored power levels at each of the plurality of motorized transport units; identify an available recharge station, of a plurality of recharge stations distributed throughout the shopping facility, at least relative to a location of the first motorized transport unit intended to be subjected to recharging; and wirelessly communicate one or more instructions to cause the first motorized transport unit to cooperate with an available recharge station.
Robotic system with piece-loss management mechanism
A method for operating a robotic system that includes calculating a base motion plan, wherein the base motion plan includes a sequence of commands or settings, or a combination thereof, that operates a robotic arm and a gripper to transfer a target object from a start location to a task location; receiving a contact measure while executing the base motion plan, wherein the contact measure represents an amount of grip of the gripper on the target object; and generating one or more actuator commands/settings that deviate from the base motion plan when the contact measure fails to satisfy a threshold, wherein the one or more actuator commands/settings thereof are configured to operate the robotic arm, the gripper, or a combination thereof to execute one or more response actions not included in the base motion plan.