Patents by Inventor Raffaello D'Andrea

Raffaello D'Andrea 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).

  • Patent number: 10067501
    Abstract: A method for transporting inventory items includes moving a mobile drive unit to a first point within a workspace. The first point is a location of an inventory holder. The method further includes docking the mobile drive unit with the inventory holder and moving the mobile drive unit and the inventory holder to a second point within the workspace. The second point is associated with conveyance equipment. The method further includes moving the inventory holder to a third point within the workspace using the conveyance equipment.
    Type: Grant
    Filed: March 9, 2018
    Date of Patent: September 4, 2018
    Assignee: Amazon Technologies, Inc.
    Inventors: Peter R. Wurman, Raffaello D'Andrea, Michael T. Barbehenn, Andrew Edward Hoffman, Michael Cordell Mountz
  • Publication number: 20180237148
    Abstract: According to the present invention there is provided an aerial vehicle that is operable to fly, the aerial vehicle having at least a first and second subsystem that are operably connected, wherein the first subsystem comprises a first flight module, first one or more effectors that are selectively operable to generate a first force sufficient to cause the aerial vehicle to fly; and the second subsystem comprises a second flight module, second one or more effectors that are selectively operable to generate a second force sufficient to cause the aerial vehicle to fly; such that the first or second subsystem can be selectively used to fly the aerial vehicle not relying on the one or more effectors of the other subsystem. There is further provided a corresponding method for controlling an aerial vehicle.
    Type: Application
    Filed: May 27, 2016
    Publication date: August 23, 2018
    Inventors: Markus Hehn, Markus Waibel, Luca Gherardi, Raffaello D'Andrea
  • Publication number: 20180196413
    Abstract: A method for transporting inventory items includes moving a mobile drive unit to a first point within a workspace. The first point is a location of an inventory holder. The method further includes docking the mobile drive unit with the inventory holder and moving the mobile drive unit and the inventory holder to a second point within the workspace. The second point is associated with conveyance equipment. The method further includes moving the inventory holder to a third point within the workspace using the conveyance equipment.
    Type: Application
    Filed: March 9, 2018
    Publication date: July 12, 2018
    Inventors: Peter R. Wurman, Raffaello D'Andrea, Michael T. Barbehenn, Andrew Edward Hoffman, Michael Cordell Mountz
  • Publication number: 20180196120
    Abstract: A self-localizing apparatus uses timestampable signals transmitted by transceivers that are a part of a distributed localization system to compute its position relative to the transceivers. Transceivers and self-localizing apparatuses are arranged for highly accurate timestamping using digital and analog reception and transmission electronics as well as one or more highly accurate clocks, compensation units, localization units, position calibration units, scheduling units, or synchronization units. Transceivers and self-localizing apparatuses are further arranged to allow full scalability in the number of self-localizing apparatuses and to allow robust self-localization with latencies and update rates useful for high performance applications such as autonomous mobile robot control.
    Type: Application
    Filed: March 9, 2018
    Publication date: July 12, 2018
    Inventors: Markus Hehn, Markus Waibel, Raffaello D'Andrea
  • Publication number: 20180155009
    Abstract: According to a first aspect of the invention, there is provided a method for operating a multicopter experiencing a failure during flight, the multicopter comprising a body, and at least four effectors attached to the body, each operable to produce both a torque and a thrust force which can cause the multicopter to fly when not experiencing said failure.
    Type: Application
    Filed: December 6, 2017
    Publication date: June 7, 2018
    Inventors: Mark W. MUELLER, Sergei LUPASHIN, Raffaello D'ANDREA, Markus WAIBEL
  • Publication number: 20180149948
    Abstract: According to a first aspect of the present invention there is provided an arrangement comprising, a volitant body comprising at least one actuator; a control unit for controlling said actuator; and a mechanical arrangement for operationally connecting said volitant body to a reference point remote from said volitant body. There is further provided a corresponding method for operating such an arrangement.
    Type: Application
    Filed: September 5, 2017
    Publication date: May 31, 2018
    Inventors: Markus Waibel, Sergei Lupashin, Markus Hehn, Raffaello D'Andrea
  • Patent number: 9945929
    Abstract: A self-localizing apparatus uses timestampable signals transmitted by transceivers that are a part of a distributed localization system to compute its position relative to the transceivers. Transceivers and self-localizing apparatuses are arranged for highly accurate timestamping using digital and analog reception and transmission electronics as well as one or more highly accurate clocks, compensation units, localization units, position calibration units, scheduling units, or synchronization units. Transceivers and self-localizing apparatuses are further arranged to allow full scalability in the number of self-localizing apparatuses and to allow robust self-localization with latencies and update rates useful for high performance applications such as autonomous mobile robot control.
    Type: Grant
    Filed: June 3, 2016
    Date of Patent: April 17, 2018
    Assignee: Verity Studios AG
    Inventors: Markus Hehn, Markus Waibel, Raffaello D'Andrea
  • Patent number: 9885773
    Abstract: A self-localizing apparatus uses timestampable signals transmitted by transceivers that are a part of a distributed localization system to compute its position relative to the transceivers. Transceivers and self-localizing apparatuses are arranged for highly accurate timestamping using digital and analog reception and transmission electronics as well as one or more highly accurate clocks, compensation units, localization units, position calibration units, scheduling units, or synchronization units. Transceivers and self-localizing apparatuses are further arranged to allow full scalability in the number of self-localizing apparatuses and to allow robust self-localization with latencies and update rates useful for high performance applications such as autonomous mobile robot control.
    Type: Grant
    Filed: March 7, 2016
    Date of Patent: February 6, 2018
    Assignee: Verity Studios AG
    Inventors: Markus Hehn, Markus Waibel, Raffaello D'Andrea
  • Patent number: 9856016
    Abstract: According to a first aspect of the invention, there is provided a method for operating a multicopter experiencing a failure during flight, the multicopter comprising a body, and at least four effectors attached to the body, each operable to produce both a torque and a thrust force which can cause the multicopter to fly when not experiencing said failure.
    Type: Grant
    Filed: June 5, 2014
    Date of Patent: January 2, 2018
    Assignee: ETH Zurich
    Inventors: Mark W. Mueller, Sergei Lupashin, Raffaello D'Andrea, Markus Waibel
  • Publication number: 20170269586
    Abstract: An interactive mobile robot system and a method for creating an invisible track for a mobile robot. The system and method allow the creation of invisible tracks by guiding objects. They also allow the use of such invisible tracks for the semi-autonomous or autonomous control of toys, including model cars and model trains, or of mobile robots to move them along a real-world path. The system includes a mobile robot, receiver circuitry to receive one or more position signals, and processing circuitry. The processing circuitry is configured to determine position information associated with the mobile robot based on the one or more position signals. The processing circuitry is further configured to create an invisible track based on the position information, to determine a current position of the mobile robot, and to generate control signals based on the current position of the mobile robot and the invisible track.
    Type: Application
    Filed: August 18, 2015
    Publication date: September 21, 2017
    Inventors: Raffaello D'Andrea, Markus Waibel, Mark Mueller, Markus Hehn
  • Patent number: 9753355
    Abstract: According to a first aspect of the present invention there is provided an arrangement comprising, a volitant body comprising at least one actuator; a control unit for controlling said actuator; and a mechanical arrangement for operationally connecting said volitant body to a reference point remote from said volitant body. There is further provided a corresponding method for operating such an arrangement.
    Type: Grant
    Filed: August 16, 2013
    Date of Patent: September 5, 2017
    Assignee: Perspective Robotics AG
    Inventors: Markus Waibel, Sergei Lupashin, Markus Hehn, Raffaello D'Andrea
  • Patent number: 9740212
    Abstract: A method for moving one or more mobile drive units within a workspace includes receiving, from a first mobile drive unit, a reservation request requesting use of a first path segment to move in a first direction. The method further includes determining that a second mobile drive unit is currently located on the first path segment and determining whether the second mobile drive unit is moving in the first direction. Additionally, the method includes transmitting a reservation response indicating that the reservation request is denied, in response to determining that the second mobile drive unit is not moving in the first direction. The method also includes transmitting a reservation response indicating that the reservation request is granted, in response to determining that the second mobile drive unit is moving in the first direction.
    Type: Grant
    Filed: March 14, 2013
    Date of Patent: August 22, 2017
    Assignee: Amazon Technologies, Inc.
    Inventors: Raffaello D'Andrea, Peter R. Wurman, Michael T. Barbehenn, Andrew E. Hoffman, Michael C. Mountz
  • Patent number: 9661472
    Abstract: Localization systems and methods for transmitting timestampable localization signals from anchors according to one or more transmission schedules. The transmission schedules may be generated and updated to achieve desired positioning performance. For example, one or more anchors may transmit localization signals at a different rate than other anchors, the anchor transmission order can be changed, and the signals can partially overlap. In addition, different transmission parameters may be used to transmit two localization signals at the same time without interference. A self-localizing apparatus is able to receive the localization signals and determine its position. The self-localizing apparatus may have a configurable receiver that can select to receive one of multiple available localization signals. The self-localizing apparatuses may have a pair of receivers able to receive two localization signals at the same time.
    Type: Grant
    Filed: October 7, 2016
    Date of Patent: May 23, 2017
    Assignee: Verity Studios AG
    Inventors: Luca Gherardi, Raffaello D'Andrea, Markus Hehn, Markus Waibel
  • Publication number: 20170038770
    Abstract: A method for transporting inventory items includes moving a mobile drive unit to a first point within a workspace. The first point is a location of an inventory holder. The method further includes docking the mobile drive unit with the inventory holder and moving the mobile drive unit and the inventory holder to a second point within the workspace. The second point is associated with conveyance equipment. The method further includes moving the inventory holder to a third point within the workspace using the conveyance equipment.
    Type: Application
    Filed: October 24, 2016
    Publication date: February 9, 2017
    Inventors: Peter R. Wurman, Raffaello D'Andrea, Michael T. Barbehenn, Andrew Edward Hoffman, Michael Cordell Mountz
  • Publication number: 20170022010
    Abstract: A system for transporting inventory items includes an inventory holder capable of storing inventory items and a mobile drive unit. The mobile drive unit is capable of moving to a first point with the inventory holder at least one of coupled to and supported by the mobile drive unit. The mobile drive unit is additionally capable of determining a location of the inventory holder and calculating a difference between the location of the inventory holder and the first point. The mobile drive unit is then capable of determining whether the difference is greater than a predetermined tolerance. In response to determining that the difference is greater than the predetermined tolerance, the mobile drive unit is also capable of moving to a second point based on the location of the inventory holder, docking with the inventory holder, and moving the mobile drive unit and the inventory holder to the first point.
    Type: Application
    Filed: October 7, 2016
    Publication date: January 26, 2017
    Inventors: Raffaello D'Andrea, Peter K. Mansfield, Michael Cordell Mountz, Dennis Polic, Patrick R. Dingle
  • Publication number: 20170026807
    Abstract: Localization systems and methods for transmitting timestampable localization signals from anchors according to one or more transmission schedules. The transmission schedules may be generated and updated to achieve desired positioning performance. For example, one or more anchors may transmit localization signals at a different rate than other anchors, the anchor transmission order can be changed, and the signals can partially overlap. In addition, different transmission parameters may be used to transmit two localization signals at the same time without interference. A self-localizing apparatus is able to receive the localization signals and determine its position. The self-localizing apparatus may have a configurable receiver that can select to receive one of multiple available localization signals. The self-localizing apparatuses may have a pair of receivers able to receive two localization signals at the same time.
    Type: Application
    Filed: October 7, 2016
    Publication date: January 26, 2017
    Inventors: Luca Gherardi, Raffaello D'Andrea, Markus Hehn, Markus Waibel
  • Publication number: 20170003374
    Abstract: A self-localizing apparatus uses timestampable signals transmitted by transceivers that are a part of a distributed localization system to compute its position relative to the transceivers. Transceivers and self-localizing apparatuses are arranged for highly accurate timestamping using digital and analog reception and transmission electronics as well as one or more highly accurate clocks, compensation units, localization units, position calibration units, scheduling units, or synchronization units. Transceivers and self-localizing apparatuses are further arranged to allow full scalability in the number of self-localizing apparatuses and to allow robust self-localization with latencies and update rates useful for high performance applications such as autonomous mobile robot control.
    Type: Application
    Filed: June 3, 2016
    Publication date: January 5, 2017
    Inventors: Markus Hehn, Markus Waibel, Raffaello D'Andrea
  • Patent number: 9519284
    Abstract: A method for transporting inventory items includes moving a mobile drive unit to a first point within a workspace. The first point is a location of an inventory holder. The method further includes docking the mobile drive unit with the inventory holder and moving the mobile drive unit and the inventory holder to a second point within the workspace. The second point is associated with conveyance equipment. The method further includes moving the inventory holder to a third point within the workspace using the conveyance equipment.
    Type: Grant
    Filed: December 3, 2013
    Date of Patent: December 13, 2016
    Assignee: Amazon Technologies, Inc.
    Inventors: Peter R. Wurman, Raffaello D'Andrea, Michael T. Barbehenn, Andrew Edward Hoffman, Michael Cordell Mountz
  • Patent number: 9511934
    Abstract: A method of rotating an inventory holder includes moving an inventory holder towards a rotation area along a straight segment of a path with a first face of the inventory holder facing a first direction. The rotation area includes a portion of a workspace designated for rotation of inventory holders. The method further includes moving the inventory holder into the rotation area along a first arced segment with an orientation of the first face perpendicular to the first arced segment. The method additionally includes executing a rotation maneuver within the rotation area and moving the inventory holder out of the rotation area along a second arced segment with a second face facing the first direction.
    Type: Grant
    Filed: January 3, 2014
    Date of Patent: December 6, 2016
    Assignee: Amazon Technologies, Inc.
    Inventors: Peter R. Wurman, Raffaello D'Andrea, Michael T. Barbehenn, Andrew Edward Hoffman, David C. Koehler, Michael Cordell Mountz
  • Publication number: 20160353238
    Abstract: Localization systems and methods for transmitting timestampable localization signals from anchors according to one or more transmission schedules. The transmission schedules may be generated and updated to achieve desired positioning performance. For example, one or more anchors may transmit localization signals at a different rate than other anchors, the anchor transmission order can be changed, and the signals can partially overlap. In addition, different transmission parameters may be used to transmit two localization signals at the same time without interference. A self-localizing apparatus is able to receive the localization signals and determine its position. The self-localizing apparatus may have a configurable receiver that can select to receive one of multiple available localization signals. The self-localizing apparatuses may have a pair of receivers able to receive two localization signals at the same time.
    Type: Application
    Filed: May 30, 2016
    Publication date: December 1, 2016
    Inventors: Luca Gherardi, Raffaello D'Andrea, Markus Hehn, Markus Waibel