Patents by Inventor Rasmus Debitsch

Rasmus Debitsch has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Publication number: 20240087269
    Abstract: A method and system of correcting a point cloud is provided. The method includes selecting a region within the point cloud. At least two objects within the region are identified. The at least two objects are re-aligned. At least a portion of the point cloud is aligned based at least in part on the realignment of the at least two objects.
    Type: Application
    Filed: November 14, 2023
    Publication date: March 14, 2024
    Inventors: Daniel Döring, Rasmus Debitsch, Gerrit Hillebrand, Martin Ossig
  • Publication number: 20230228557
    Abstract: A system and method for providing feedback on a quality of a 3D scan is provided. The system includes a coordinate scanner configured to optically measure and determine a plurality of three-dimensional coordinates to a plurality of locations on at least one surface in the environment, the coordinate scanner being configured to move through the environment while acquiring the plurality of three-dimensional coordinates. A display having a graphical user interface. One or more processors are provided that are configured to determine a quality attribute of a process of measuring the plurality of three-dimensional coordinates based at least in part on the movement of the coordinate scanner in the environment and display a graphical quality indicator on the graphical user interface based at least in part on the quality attribute, the quality indicator is a graphical element having at least one movable element.
    Type: Application
    Filed: March 27, 2023
    Publication date: July 20, 2023
    Inventors: Daniel Döring, Rasmus Debitsch, Rene Pfeiffer, Axel Ruhland
  • Patent number: 11692812
    Abstract: A three-dimensional (3D) measurement system, a method of measuring 3D coordinates, and a method of generating dense 3D data is provided. The method of measuring 3D coordinates includes using a first 3D measurement device and a second 3D measurement device in a cooperative manner is provided. The method includes acquiring a first set of 3D coordinates with the first 3D measurement device. The first set of 3D coordinates are transferred to the second 3D measurement device. A second set of 3D coordinates is acquired with the second 3D measurement device. The second set of 3D coordinates are registered to the first set of 3D coordinates in real-time while the second 3D measurement device is acquiring the second set of 3D coordinates.
    Type: Grant
    Filed: November 12, 2021
    Date of Patent: July 4, 2023
    Assignee: FARO Technologies, Inc.
    Inventors: Daniel Döring, Gerrit Hillebrand, Rasmus Debitsch, Rene Pfeiffer, Martin Ossig, Alexander Kramer
  • Patent number: 11614319
    Abstract: A system and method for providing feedback on a quality of a 3D scan is provided. The system includes a coordinate scanner configured to optically measure and determine a plurality of three-dimensional coordinates to a plurality of locations on at least one surface in the environment, the coordinate scanner being configured to move through the environment while acquiring the plurality of three-dimensional coordinates. A display having a graphical user interface. One or more processors are provided that are configured to determine a quality attribute of a process of measuring the plurality of three-dimensional coordinates based at least in part on the movement of the coordinate scanner in the environment and display a graphical quality indicator on the graphical user interface based at least in part on the quality attribute, the quality indicator is a graphical element having at least one movable element.
    Type: Grant
    Filed: June 7, 2021
    Date of Patent: March 28, 2023
    Assignee: FARO Technologies, Inc.
    Inventors: Daniel Döring, Rasmus Debitsch, Rene Pfeiffer, Axel Ruhland
  • Patent number: 11293748
    Abstract: A three-dimensional (3D) measurement system, a method of measuring 3D coordinates, and a method of generating dense 3D data is provided. The method of measuring 3D coordinates includes using a first 3D measurement device and a second 3D measurement device in a cooperative manner is provided. The method includes acquiring a first set of 3D coordinates with the first 3D measurement device. The first set of 3D coordinates are transferred to the second 3D measurement device. A second set of 3D coordinates is acquired with the second 3D measurement device. The second set of 3D coordinates are registered to the first set of 3D coordinates in real-time while the second 3D measurement device is acquiring the second set of 3D coordinates.
    Type: Grant
    Filed: February 25, 2020
    Date of Patent: April 5, 2022
    Assignee: FARO TECHNOLOGIES, INC.
    Inventors: Daniel Döring, Gerrit Hillebrand, Rasmus Debitsch, Rene Pfeiffer, Martin Ossig, Alexander Kramer
  • Publication number: 20220074733
    Abstract: A three-dimensional (3D) measurement system, a method of measuring 3D coordinates, and a method of generating dense 3D data is provided. The method of measuring 3D coordinates includes using a first 3D measurement device and a second 3D measurement device in a cooperative manner is provided. The method includes acquiring a first set of 3D coordinates with the first 3D measurement device. The first set of 3D coordinates are transferred to the second 3D measurement device. A second set of 3D coordinates is acquired with the second 3D measurement device. The second set of 3D coordinates are registered to the first set of 3D coordinates in real-time while the second 3D measurement device is acquiring the second set of 3D coordinates.
    Type: Application
    Filed: November 12, 2021
    Publication date: March 10, 2022
    Inventors: Daniel Döring, Gerrit Hillebrand, Rasmus Debitsch, Rene Pfeiffer, Martin Ossig, Alexander Kramer
  • Publication number: 20210404792
    Abstract: A system and method for providing feedback on a quality of a 3D scan is provided. The system includes a coordinate scanner configured to optically measure and determine a plurality of three-dimensional coordinates to a plurality of locations on at least one surface in the environment, the coordinate scanner being configured to move through the environment while acquiring the plurality of three-dimensional coordinates. A display having a graphical user interface. One or more processors are provided that are configured to determine a quality attribute of a process of measuring the plurality of three-dimensional coordinates based at least in part on the movement of the coordinate scanner in the environment and display a graphical quality indicator on the graphical user interface based at least in part on the quality attribute, the quality indicator is a graphical element having at least one movable element.
    Type: Application
    Filed: June 7, 2021
    Publication date: December 30, 2021
    Inventors: Daniel Döring, Rasmus Debitsch, Rene Pfeiffer, Axel Ruhland
  • Publication number: 20210375064
    Abstract: A method and system of correcting a point cloud is provided. The method includes selecting a region within the point cloud. At least two objects within the region are identified. The at least two objects are re-aligned. At least a portion of the point cloud is aligned based at least in part on the realignment of the at least two objects.
    Type: Application
    Filed: May 7, 2021
    Publication date: December 2, 2021
    Inventors: Daniel Döring, Rasmus Debitsch, Gerrit Hillebrand, Martin Ossig
  • Publication number: 20210374978
    Abstract: According to one or more embodiments, a system includes a scanner device configured to capture a set of point clouds comprising 3D points. The system further includes one or more processors that detect, during the capture of the set of point clouds, at least one first anchor object in a first part of a first point cloud. The first part belongs to a first time interval centered at time t1. A second anchor object is detected in a second part of the first point cloud, the second part belonging to second time interval centered at time t2. Further, at least one correspondence is identified between the first anchor object and the second anchor object. The first part of the first point cloud is aligned with the second part of the first point cloud based on the at least one correspondence between the first anchor object and the second anchor object.
    Type: Application
    Filed: May 26, 2021
    Publication date: December 2, 2021
    Inventors: Daniel Döring, Gerrit Hillebrand, Martin Ossig, Rasmus Debitsch
  • Publication number: 20210156881
    Abstract: Provided are embodiments for a device and method for measuring three-dimensional (3D) coordinates. Embodiments include a projector having a projector optical axis on a first plane, the projector operable to project a collection of laser beams on a surface of an object, and a first camera having a first-camera optical axis on the first plane, the first camera operable to capture a first image of the collection of laser beams on the surface of the object. Embodiments also include one or more processors, the one or more processors are operable to generate a first distance profile for the object using a first laser beam of the collection of laser beams and generate a second distance profile for the object using a second laser beam of the collection of laser beams, estimate the velocity of the object based on the first and second distance profile, and provide the estimated velocity.
    Type: Application
    Filed: October 14, 2020
    Publication date: May 27, 2021
    Inventors: Oliver Zweigle, Michael Müller, Mark Brenner, Rasmus Debitsch, Gerrit Hillebrand, Maxim Muschinski
  • Publication number: 20200284574
    Abstract: A three-dimensional (3D) measurement system, a method of measuring 3D coordinates, and a method of generating dense 3D data is provided. The method of measuring 3D coordinates includes using a first 3D measurement device and a second 3D measurement device in a cooperative manner is provided. The method includes acquiring a first set of 3D coordinates with the first 3D measurement device. The first set of 3D coordinates are transferred to the second 3D measurement device. A second set of 3D coordinates is acquired with the second 3D measurement device. The second set of 3D coordinates are registered to the first set of 3D coordinates in real-time while the second 3D measurement device is acquiring the second set of 3D coordinates.
    Type: Application
    Filed: February 25, 2020
    Publication date: September 10, 2020
    Inventors: Daniel Döring, Gerrit Hillebrand, Rasmus Debitsch, Rene Pfeiffer, Martin Ossig, Alexander Kramer
  • Patent number: 10499040
    Abstract: A device and method for scanning and measuring an environment is provided. The method includes providing a three-dimensional (3D) measurement device having a controller. Images of the environment are recorded and a 3D scan of the environment is produced with a three-dimensional point cloud. A first movement of the 3D measurement device is determined and then an operating parameter of the 3D measurement device is changed based at least in part on the first movement.
    Type: Grant
    Filed: July 31, 2017
    Date of Patent: December 3, 2019
    Assignee: FARO TECHNOLOGIES, INC.
    Inventors: Gerrit Hillebrand, Rasmus Debitsch, Rolf Heidemann, Martin Ossig, Johannes Buback
  • Patent number: 10070116
    Abstract: A method for scanning and measuring an environment is provided. The method includes providing a three-dimensional (3D) measurement device having a controller. Images of the environment are recorded and a 3D scan of the environment is produced with a three-dimensional point cloud. A video image of the environment is recorded. The video image is displayed on a first portion of a display. A portion of the three-dimensional point cloud is displayed on a second portion of the display, the second portion of the display being arranged about the periphery of the first portion of the display. Wherein a portion of the 3D point cloud displayed in the second portion represents a portion of the environment outside of a field of view of the video image.
    Type: Grant
    Filed: May 15, 2015
    Date of Patent: September 4, 2018
    Assignee: FARO TECHNOLOGIES, INC.
    Inventors: Gerrit Hillebrand, Rasmus Debitsch, Rolf Heidemann
  • Publication number: 20170332069
    Abstract: A device and method for scanning and measuring an environment is provided. The method includes providing a three-dimensional (3D) measurement device having a controller. Images of the environment are recorded and a 3D scan of the environment is produced with a three-dimensional point cloud. A first movement of the 3D measurement device is determined and then an operating parameter of the 3D measurement device is changed based at least in part on the first movement.
    Type: Application
    Filed: July 31, 2017
    Publication date: November 16, 2017
    Inventors: Gerrit Hillebrand, Rasmus Debitsch, Rolf Heidemann, Martin Ossig, Johannes Buback
  • Patent number: 9769463
    Abstract: A device and method for scanning and measuring an environment is provided. The method includes providing a three-dimensional (3D) measurement device having a controller. Images of the environment are recorded and a 3D scan of the environment is produced with a three-dimensional point cloud. A first movement of the 3D measurement device is determined and then an operating parameter of the 3D measurement device is changed based at least in part on the first movement.
    Type: Grant
    Filed: May 27, 2015
    Date of Patent: September 19, 2017
    Assignee: FARO TECHNOLOGIES, INC.
    Inventors: Gerrit Hillebrand, Rasmus Debitsch, Rolf Heidemann, Martin Ossig, Johannes Buback
  • Patent number: D760264
    Type: Grant
    Filed: January 2, 2015
    Date of Patent: June 28, 2016
    Assignee: FARO TECHNOLOGIES, INC.
    Inventors: Rasmus Debitsch, Joran Heining, Martin Ossig
  • Patent number: D761834
    Type: Grant
    Filed: January 2, 2015
    Date of Patent: July 19, 2016
    Assignee: FARO TECHNOLOGIES, INC
    Inventors: Rasmus Debitsch, Joran Heining, Martin Ossig
  • Patent number: D761854
    Type: Grant
    Filed: January 2, 2015
    Date of Patent: July 19, 2016
    Assignee: FARO TECHNOLOGIES, INC.
    Inventors: Rasmus Debitsch, Joran Heining, Martin Ossig
  • Patent number: D761862
    Type: Grant
    Filed: January 2, 2015
    Date of Patent: July 19, 2016
    Assignee: FARO TECHNOLOGIES, INC
    Inventors: Rasmus Debitsch, Joran Heining, Martin Ossig
  • Patent number: D761863
    Type: Grant
    Filed: January 2, 2015
    Date of Patent: July 19, 2016
    Assignee: FARO TECHNOLOGIES, INC.
    Inventors: Rasmus Debitsch, Joran Heining, Martin Ossig