Patent classifications
G05B2219/31305
Body channel communication method and apparatus for performing the same
Disclosed are a body channel communication method and an apparatus performing the same. An operating method of a transmitter includes obtaining an input signal including biometric information, generating an encoded signal and a control signal by encoding the input signal, generating a return-to-zero (RZ) signal of a biphasic waveform based on the encoded signal, and transmitting the RZ signal through a body channel.
DATA SELECTION BASED ON UNCERTAINTY QUANTIFICATION
Apparatuses, systems, and techniques generate poses of an object based on data of the object observed from a first viewpoint and a second viewpoint. The poses can be evaluated to determine a portion of the data usable by an estimator to generate a pose of the object.
Method for picking up an object from a bin
There is provided a method for picking up an object from a bin to be implemented by a robotic arm including a controller and a picking-up module. The method includes: recognizing, by the controller, at least one object in the bin based on an image of an interior of the bin so as to determine a type of each object; determining, by the controller, a score for each object based on the type thereof; determining, by the controller, whether a greatest score among the score(s) of the at least one TBT object is greater than a predetermined value; and by the picking-up module, picking up one of the at least one TBT object that has the greatest score when it is determined that the greatest score is greater than the predetermined value.
SYSTEMS AND METHODS FOR HIGH ACCURACY FIXTURELESS ASSEMBLY
An approach to positioning one or more robotic arms in an assembly system may be described herein. For example, a system for robotic assembly may include a first robot, a second robot, and a control unit. The control unit may be configured to receive a first target location proximal to a second target location. The locations may indicate where the robots are to position the features. The control unit may be configured to calculate a first calculated location of the first feature of the first subcomponent, measure a first measured location of the first feature of the first subcomponent, determine a first transformation matrix between the first calculated location and the first measured location, reposition the first feature of the first subcomponent to the first target location using the first robot, the repositioning based on the first transformation matrix.
SYSTEMS AND METHODS FOR SKU INDUCTION, DECANTING AND AUTOMATED-ELIGIBILITY ESTIMATION
- John Richard Amend, Jr. ,
- Timothy Barber ,
- Benjamin Cohen ,
- Christopher Geyer ,
- Evan Glasgow ,
- James Guillochon ,
- Kirsten Wang ,
- Victoria Hinchey ,
- Jennifer Eileen King ,
- Thomas Koletschka ,
- Guoming Alex LONG ,
- Kyle Maroney ,
- Matthew T. Mason ,
- William Chu-Hyon McMahan ,
- Samuel Naseef ,
- Kevin O'Brien ,
- Dimitry Pechyoni ,
- Joseph Romano ,
- Max Saccoccio ,
- Jessica Scolnic ,
- Prasanna Velagapudi
An object induction system is disclosed for assigning handling parameters to an object. The system includes an analysis system, an association system, and an assignment system. The analysis system includes at least one characteristic perception system for providing perception data regarding an object to be processed. The association system includes an object information database and assigns association data to the object responsive to commonality with of any of the characteristic perception data with any of the characteristic recorded data. The assignment system is for assigning programmable motion device handling parameters to the indicia perception data based on the association data, and includes a workflow management system as well as a separate operational controller.
METHOD FOR PICKING UP AN OBJECT FROM A BIN
There is provided a method for picking up an object from a bin to be implemented by a robotic arm including a controller and a picking-up module. The method includes: recognizing, by the controller, at least one object in the bin based on an image of an interior of the bin so as to determine a type of each object; determining, by the controller, a score for each object based on the type thereof; determining, by the controller, whether a greatest score among the score(s) of the at least one TBT object is greater than a predetermined value; and by the picking-up module, picking up one of the at least one TBT object that has the greatest score when it is determined that the greatest score is greater than the predetermined value.
Systems and methods for high accuracy fixtureless assembly
An approach to positioning one or more robotic arms in an assembly system may be described herein. For example, a system for robotic assembly may include a first robot, a second robot, and a control unit. The control unit may be configured to receive a first target location proximal to a second target location. The locations may indicate where the robots are to position the features. The control unit may be configured to calculate a first calculated location of the first feature of the first subcomponent, measure a first measured location of the first feature of the first subcomponent, determine a first transformation matrix between the first calculated location and the first measured location, reposition the first feature of the first subcomponent to the first target location using the first robot, the repositioning based on the first transformation matrix.
BODY CHANNEL COMMUNICATION METHOD AND APPARATUS FOR PERFORMING THE SAME
Disclosed are a body channel communication method and an apparatus performing the same. An operating method of a transmitter includes obtaining an input signal including biometric information, generating an encoded signal and a control signal by encoding the input signal, generating a return-to-zero (RZ) signal of a biphasic waveform based on the encoded signal, and transmitting the RZ signal through a body channel.
Systems, apparatuses and methods of supporting payment test cards and robotically testing card payment systems
Some embodiments provide robotic multiple-slot test card support systems comprising: a test robot system comprising a robotic arm and an end-effector; and a first card support apparatus comprising: a plurality of lateral supports; a plurality of angled shelf supports each extending between a pair of the plurality of lateral supports defining an array of angled card slots, wherein the shelf supports along the columns are vertically separated and each comprises: a guide exterior surface and an interior surface configured to support a payment test card with at least a portion of a face of the test card being flush with the interior surface; wherein each card slot repeatedly positions the respective test card at substantially the same position within the card slot each time the test card is released by the end-effector enabling repeated accurate retrieval by the end-effector.
SYSTEMS AND METHODS FOR HIGH ACCURACY FIXTURELESS ASSEMBLY
An approach to positioning one or more robotic arms in an assembly system may be described herein. For example, a system for robotic assembly may include a first robot, a second robot, and a control unit. The control unit may be configured to receive a first target location proximal to a second target location. The locations may indicate where the robots are to position the features. The control unit may be configured to calculate a first calculated location of the first feature of the first subcomponent, measure a first measured location of the first feature of the first subcomponent, determine a first transformation matrix between the first calculated location and the first measured location, reposition the first feature of the first subcomponent to the first target location using the first robot, the repositioning based on the first transformation matrix.