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System and method for determining a work offset

A technology of working and working planes, applied in general control systems, control/regulation systems, manufacturing tools, etc.

Active Publication Date: 2018-04-17
X DEV LLC
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The robot can initiate the work offset determination method by identifying the work plane

Method used

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  • System and method for determining a work offset
  • System and method for determining a work offset
  • System and method for determining a work offset

Examples

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Embodiment Construction

[0018] Example methods and systems are described herein. Any example embodiment or feature described herein is not necessarily to be construed as preferred or advantageous over other embodiments or features. The example embodiments described here are not meant to be limiting. It will be readily appreciated that certain aspects of the disclosed systems and methods can be arranged and combined in a wide variety of different configurations, all of which are contemplated herein.

[0019] Furthermore, the particular arrangements shown in the drawings are not to be considered limiting. It should be understood that other embodiments may include more or less of each element shown in a given figure. Furthermore, some of the elements shown may be combined or omitted. Additionally, example embodiments may include elements not shown in the figures.

[0020] The robot can learn information about the position and orientation of the aircraft in the environment (eg, ground level) in order...

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Abstract

Example systems and methods are disclosed for determining work offset data for a robot m a work environment. A robot operating in a work environment may receive an indication to determine a work offset. The work offset may describe the location and angular orientation of a working plane of the work environment relative to a base plane of the robot. In response to the indication, the robot may identify the working plane. The robot may be controlled to contact one or more points of the working plane. The robot may determine respective point locations of the contacted points relative to the baseplane based on the respective positions of the robot at respective times of contact. The robot may determine the location and angular orientation of the working plane relative to the base plane basedon the determined respective point locations of the contacted points.

Description

Background technique [0001] Robotic systems can be used in applications involving material handling, welding, assembly and distribution, among others. Over time, the way these robotic systems operate has become smarter, more efficient, and more intuitive. As robotic systems become more prevalent in many aspects of modern life, the need for robotic systems that can operate alongside and interact with humans has become apparent. As a result, the need for such robotic systems has helped to create innovative fields in actuators, sensing technologies, controllers, and component design and assembly. Contents of the invention [0002] Example systems and methods may provide work offset data for determining a robot in a work environment. A work offset may describe the position and angular orientation of the work plane of the work environment relative to the robot's reference plane. The robot can initiate the work offset determination method by identifying the work plane. The wor...

Claims

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Application Information

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IPC IPC(8): G05B19/408
CPCG05B19/4083G05B2219/33271G05B2219/36503G05B2219/39032B25J9/1664B25J9/1697
Inventor B.M.戴维斯
Owner X DEV LLC
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