Patents by Inventor Gustav Hoegh

Gustav Hoegh 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: 11959458
    Abstract: Provided is a method of correcting a measurement value of least one wind characteristic, in particular wind speed and/or wind direction, related to a wind turbine having a rotor with plural rotor blades at least one having an adaptable flow regulating device installed, the method including: measuring a value of the wind characteristic; obtaining state information of the adaptable flow regulating device; and determining a corrected value of the wind characteristic based on the measured value of the wind characteristic and the state information of the adaptable flow regulating device.
    Type: Grant
    Filed: October 31, 2019
    Date of Patent: April 16, 2024
    Assignee: Siemens Gamesa Renewable Energy A/S
    Inventors: Per Egedal, Thomas Esbensen, Gustav Hoegh
  • Patent number: 11952984
    Abstract: A method of controlling a wind turbine, wherein the wind turbine includes a hub having at least one blade with at least one an add-on member which is actuated to alter aerodynamic properties of the blade. The method includes a step of acquiring a target noise level, and a step of controlling the at least one add-on member of the blade such that an actual noise level caused by the operation of the wind turbine is equal to or below the target noise level.
    Type: Grant
    Filed: March 1, 2021
    Date of Patent: April 9, 2024
    Assignee: SIEMENS GAMESA RENEWABLE ENERGY A/S
    Inventors: Thomas Esbensen, Gustav Hoegh
  • Patent number: 11920564
    Abstract: Provided is a wind turbine and to a method and a device for controlling aerodynamic properties of a blade of the wind turbine, the blade including a predetermined number of add-on members which are actuated by a corresponding trim actuator to alter the aerodynamic properties of the blade, wherein each trim actuator is configured to hold the add-on member in a predetermined first position and a predetermined second position. The control device is configured to determine a first number of add-on members which are to be held at the predetermined first position, and to determine a second number of add-on members which are to be held at the predetermined second position.
    Type: Grant
    Filed: October 31, 2019
    Date of Patent: March 5, 2024
    Assignee: SIEMENS GAMESA RENEWABLE ENERGY A/S
    Inventors: Per Egedal, Gustav Hoegh
  • Publication number: 20240003332
    Abstract: A method of controlling a pitching system of a rotating rotor blade of a wind turbine includes: controlling the pitching system such that unintended pitching due to gravity is reduced.
    Type: Application
    Filed: November 17, 2021
    Publication date: January 4, 2024
    Inventors: Soeren Forbech Elmose, Thomas Esbensen, Gustav Hoegh, Tommy Hastrup Knudsen, Peder Bay Enevoldsen, Eduardo Raymaska Wiputra
  • Publication number: 20230323865
    Abstract: A method of determining a value of a pitch speed for a pitch actuator of at least one rotor blade of a wind turbine includes: providing a quantity being indicative of a value of a bearing moment of the rotor blade; determining the value of a pitch speed based on the quantity and a reference quantity indicative of a reference value of the bearing moment of the rotor blade such that, if the quantity indicates that the value of a bearing moment of the rotor blade is below the reference value of the bearing moment of the rotor blade, the value of a pitch speed is determined to be above a reference value of the pitch speed.
    Type: Application
    Filed: August 18, 2021
    Publication date: October 12, 2023
    Inventors: Johannes Gerhardes Wardjan Alberts, Gustav Hoegh
  • Patent number: 11767822
    Abstract: Provided is a method for detecting the operative status of an aerodynamic device for influencing the airflow which flows from the leading edge of a rotor blade for a wind turbine to the trailing edge of the rotor blade, the aerodynamic device being movable by an actuator between a first protruded configuration and a second retracted configuration. The method includes the steps of measuring a temporal course of an operational value of the wind turbine, comparing the measured temporal course of the operational value with a desired temporal course of an operational value, and deriving an operative status of the aerodynamic device.
    Type: Grant
    Filed: October 31, 2019
    Date of Patent: September 26, 2023
    Assignee: SIEMENS GAMESA RENEWABLE ENERGY A/S
    Inventors: Per Egedal, Peder Bay Enevoldsen, Moritz Fiedel, Alejandro Gomez Gonzalez, Gustav Hoegh, Mikkel Aggersbjerg Kristensen
  • Publication number: 20230272772
    Abstract: A method for controlling the rotor speed of a floating wind turbine including a floating foundation, a tower, a nacelle and a wind rotor having at least one wind blade includes the steps of: identifying a plurality of critical frequencies of the floating wind turbine, calculating a first plurality of critical rotor speeds of the wind rotor respectively corresponding to each critical frequency, calculating at least a second plurality of critical rotor speeds of the wind rotor by dividing each critical rotor speed of the first plurality of critical rotor speeds by a frequency coefficient, for each calculated critical rotor speed being lower than a maximum operational speed of the wind rotor defining a critical speed interval including the respective critical rotor speed, and operating the wind rotor at an operative rotor speed outside each defined critical speed interval.
    Type: Application
    Filed: July 22, 2021
    Publication date: August 31, 2023
    Inventors: Carlos Alberto Cavichioli Gonzaga, Thomas Esbensen, Gustav Hoegh
  • Publication number: 20230271679
    Abstract: A control system for stabilizing a floating wind turbine is connected to at least one sensor and at least one actuator of the floating wind turbine and configured for: determining a difference between the floater orientation and a predefined desired floater orientation of the floating wind turbine during towing of the floating wind turbine, actuating the at least one actuator during towing of the floating wind turbine for changing the floater orientation of the wind turbine to minimize the difference.
    Type: Application
    Filed: June 23, 2021
    Publication date: August 31, 2023
    Inventors: Thomas Esbensen, Gustav Hoegh, Kasper Laugesen
  • Patent number: 11732692
    Abstract: Provided is a device and a method of damping front and backward movements of a tower of a wind turbine, wherein the wind turbine includes the tower and a rotor, the rotor being mounted at the top of the tower to rotate about a rotational axis in which the front and backward movements of the tower occur, and the rotor has a plurality of blades, wherein each blade has at least one corresponding active add-on member which is actuated by a corresponding actuator to alter aerodynamic properties of the blade. Each add-on member is actuated by the corresponding actuator to alter the aerodynamic properties of the blade in a manner that the rotor is configured to damp the front and backward movements of the tower of the wind turbine.
    Type: Grant
    Filed: October 31, 2019
    Date of Patent: August 22, 2023
    Inventors: Per Egedal, Thomas Esbensen, Gustav Hoegh
  • Publication number: 20230250800
    Abstract: A method of controlling at least one adaptable airflow regulating system, in particular spoiler and/or flap, of at least one rotor blade of a wind turbine having a wind turbine tower includes: determining a quantity related to a distance between the rotor blade and the wind turbine tower; controlling the airflow regulating system based on the quantity.
    Type: Application
    Filed: May 26, 2021
    Publication date: August 10, 2023
    Inventors: Thomas Esbensen, Gustav Hoegh
  • Patent number: 11719226
    Abstract: A method of controlling a wind turbine including a plurality of rotor blades, a first controller for controlling an adaptive flow regulating system having a plurality of individually controllable adaptive flow regulating devices arranged on the rotor blades, and a second controller for controlling a pitch regulating system for regulating a pitch angle of each rotor blade. The method includes (a) determining a diagnostic value indicative of an operational efficiency of the adaptive flow regulating system, (b) determining a first gain value for the first controller and a second gain value for the second controller based on the diagnostic value, (c) applying the first gain value to control signals for the adaptive flow regulating system generated by the first controller, and (d) applying the second gain value to control signals for the pitch regulating system generated by the second controller, is provided.
    Type: Grant
    Filed: October 31, 2019
    Date of Patent: August 8, 2023
    Assignee: SIEMENS GAMESA RENEWABLE ENERGY A/S
    Inventors: Per Egedal, Gustav Hoegh
  • Patent number: 11714023
    Abstract: Provided is a method of monitoring the structural integrity of a supporting structure of a wind turbine, which method includes the steps of determining a fore-aft tower oscillation frequency; determining a side-to-side tower oscillation frequency; computing a working structural indicator value from the fore-aft tower oscillation frequency and the side-to-side tower oscillation frequency; comparing the working structural indicator value to a reference working structural indicator value; and issuing an alarm if the difference between the working structural indicator value and the reference structural indicator value exceeds a predefined threshold. Also provided is a system for monitoring the structural integrity of a supporting structure of a wind turbine, a wind turbine, and a computer program product for carrying out the steps of the inventive method.
    Type: Grant
    Filed: May 7, 2020
    Date of Patent: August 1, 2023
    Inventors: Gustav Hoegh, Dennis Stachniuk Jensen
  • Publication number: 20230235726
    Abstract: It is described a method of operating at least one adaptable airflow regulating system (13) of at least one rotor blade (15) of a wind turbine (1) connected to a utility grid (6), the method comprising: receiving information (10) regarding a grid disturbance; adapting, in particular during a disturbance duration, the airflow regulating system (13) based on the information (10), while the wind turbine (1) stays connected to the utility grid (6).
    Type: Application
    Filed: June 1, 2021
    Publication date: July 27, 2023
    Inventors: Thomas Esbensen, Gustav Hoegh
  • Publication number: 20230184391
    Abstract: A gas export assembly is provided including a gas production facility adapted to generate pressurized gas for export to a remote facility through a pipeline; a determining an upper humidity threshold for the export gas in the pipeline; a determining, on the basis of the upper humidity threshold, a pipeline inlet humidity for the export gas, which pipeline inlet humidity is lower than the upper humidity threshold; and a regulator stage adapted to adjust the humidity of the export gas to the pipeline inlet humidity.
    Type: Application
    Filed: December 5, 2022
    Publication date: June 15, 2023
    Inventor: Gustav Hoegh
  • Publication number: 20230151798
    Abstract: A method of controlling a wind turbine by adjusting a blade pitch angle and at least one blade add-on of at least one wind turbine rotor blade has the blade add-on, the method including: adjusting a setting of the add-on to meet a control objective while temporarily maintaining a setting of the blade pitch angle.
    Type: Application
    Filed: March 3, 2021
    Publication date: May 18, 2023
    Inventors: Fiona Dunne, Thomas Esbensen, Gustav Hoegh, Kirk Pierce, Brian Willum Solberg
  • Publication number: 20230142969
    Abstract: A method of controlling a wind turbine, wherein the wind turbine includes a hub having at least one blade with at least one an add-on member which is actuated to alter aerodynamic properties of the blade. The method includes a step of acquiring a target noise level, and a step of controlling the at least one add-on member of the blade such that an actual noise level caused by the operation of the wind turbine is equal to or below the target noise level.
    Type: Application
    Filed: March 1, 2021
    Publication date: May 11, 2023
    Inventors: Thomas Esbensen, Gustav Hoegh
  • Publication number: 20230108917
    Abstract: A wind turbine includes tower, a nacelle mounted at the top of the tower, a rotor mounted rotatable relatively to the nacelle about a rotation axis and includes at least one blade, wherein the blade, when rotating about the rotation axis, is configured to span a swept area, and a control device which is configured to control an actuator so as to move the swept area.
    Type: Application
    Filed: February 11, 2021
    Publication date: April 6, 2023
    Inventors: Thomas Esbensen, Gustav Hoegh, Kasper Laugesen
  • Publication number: 20220307473
    Abstract: Provided is a wind turbine including a tower, a nacelle arranged at an upper end of the tower, a hub connected to the nacelle and a plurality of blades extending from the hub, wherein the wind turbine further includes a drag device for increasing the drag of the wind turbine) in air and/or for increasing the aerodynamic damping, the drag device including a planar surface configured to be directed perpendicular to an air flow.
    Type: Application
    Filed: March 16, 2022
    Publication date: September 29, 2022
    Inventors: Johannes Gerhardes Wardjan Alberts, Gustav Hoegh
  • Patent number: 11454213
    Abstract: A method for damping vibration in a wind turbine including aerodynamic devices for influencing the airflow flowing from the leading edge of a rotor blade of the wind turbine to the trailing edge of the rotor blade, each aerodynamic device being movable by an actuator between a first protruded configuration and a second retracted configuration is provided. The method includes measuring vibrations in the wind turbine, if the measured vibrations are greater than a threshold within a predefined frequency band, moving a portion of the aerodynamic devices to the second retracted configuration and continuing to measure vibrations, if the measured vibrations are still greater than a threshold within a frequency band, reducing the pitch angle interval of the blade and continuing to measure vibrations, if the measured vibrations are still greater than a threshold within a frequency band, moving all the aerodynamic devices to the second retracted configuration.
    Type: Grant
    Filed: October 31, 2019
    Date of Patent: September 27, 2022
    Assignee: SIEMENS GAMESA RENEWABLE ENERGY A/S
    Inventors: Per Egedal, Gustav Hoegh
  • Publication number: 20220282706
    Abstract: A control system for positioning at least two floating wind turbines in a wind farm is provided. The control system includes a measuring device configured for measuring an incoming wind field at the two wind turbines, a determining device, wherein the determining device is configured for determining a wake property at the two wind turbines, wherein the determining device is configured for determining a propagation path of the wake property through the wind farm based on the determined wake property at the at least two floating wind turbines, wherein the determining device is configured for determining a location for each of the at least two floating wind turbines including a minimized wake influence based on the determined propagation path of the wake property through the wind farm, and a repositioning device configured for repositioning each of the at least two floating wind turbines to the determined location.
    Type: Application
    Filed: July 15, 2020
    Publication date: September 8, 2022
    Inventors: Thomas Esbensen, Gustav Hoegh, Kasper Laugesen