Patents by Inventor Kelvin Hales

Kelvin Hales 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: 11428208
    Abstract: Generating a control schedule for a wind turbine, the control schedule indicating how the turbine maximum power level varies over time. Generating the control schedule includes determining a value indicative of the current remaining fatigue lifetime of the turbine, or one or more turbine components, based on measured wind turbine site and/or operating data; applying an optimisation function that varies an initial control schedule to determine an optimised control schedule by varying the trade off between energy capture and fatigue life consumed by the turbine or the one or more turbine components until an optimised control schedule is determined.
    Type: Grant
    Filed: August 17, 2020
    Date of Patent: August 30, 2022
    Assignee: VESTAS WIND SYSTEMS A/S
    Inventors: Chris Spruce, Chakradhar Byreddy, Kelvin Hales, Judith Turner
  • Patent number: 10975843
    Abstract: A wind turbine, power plant and associated method of controlling a wind turbine is provided. Data is obtained that identifies, based on forecast data, one or more future periods of time during which it would be desirable to over-rate the wind turbine, and measures of the fatigue life consumed by one or more turbine components are determined. The total fatigue life consumed by the one or more turbine components is limited prior to the one or more periods of time by controlling the power output of the wind turbine, in advance of the one or more periods of time, based upon the measure of the fatigue life consumed by the one or more turbine components.
    Type: Grant
    Filed: June 22, 2016
    Date of Patent: April 13, 2021
    Assignee: VESTAS WIND SYSTEMS A/S
    Inventors: Chris Spruce, Kelvin Hales, Judith Turner
  • Patent number: 10975844
    Abstract: A method of generating a control schedule for a wind turbine is provided, the control schedule indicating how the turbine maximum power level varies over time, the method comprising: receiving input indicative of a target minimum wind turbine lifetime; determining a value indicative of the current remaining fatigue lifetime of the wind turbine or one or more turbine components, based on measured wind turbine site and/or operating data; and varying a parameter of an initial predefined control schedule that specifies how the turbine maximum power level varies over time.
    Type: Grant
    Filed: June 29, 2016
    Date of Patent: April 13, 2021
    Assignee: VESTAS WIND SYSTEMS A/S
    Inventors: Chris Spruce, Kelvin Hales, Judith Turner
  • Patent number: 10871146
    Abstract: A method of generating a control schedule for a wind turbine is provided, the control schedule indicating how the turbine maximum power level varies over time, the method comprising: receiving input indicative of the maximum number of times that each of one or more turbine components are to be replaced over the remaining lifetime of the turbine; determining a value indicative of the current remaining fatigue lifetime of the turbine, or one or more of the turbine components, based on measured wind turbine site and/or operating data; and varying a parameter of an initial predefined control schedule that specifies how the turbine maximum power level varies over time.
    Type: Grant
    Filed: June 29, 2016
    Date of Patent: December 22, 2020
    Assignee: VESTAS WIND SYSTEMS A/S
    Inventors: Chris Spruce, Kelvin Hales, Judith Turner
  • Publication number: 20200378360
    Abstract: Generating a control schedule for a wind turbine, the control schedule indicating how the turbine maximum power level varies over time. Generating the control schedule includes determining a value indicative of the current remaining fatigue lifetime of the turbine, or one or more turbine components, based on measured wind turbine site and/or operating data; applying an optimisation function that varies an initial control schedule to determine an optimised control schedule by varying the trade off between energy capture and fatigue life consumed by the turbine or the one or more turbine components until an optimised control schedule is determined.
    Type: Application
    Filed: August 17, 2020
    Publication date: December 3, 2020
    Inventors: Chris SPRUCE, Chakradhar BYREDDY, Kelvin HALES, Judith TURNER
  • Patent number: 10830213
    Abstract: Determination of Wind Turbine Configuration The present invention relates to a method and computer system for determining a configuration of a wind turbine of a given wind turbine type, the method comprising the steps of: storing in a database a plurality of combinations of physical and control parameters of the wind turbine that can be varied; determining a plurality of wind flow characteristics at a target location; applying a function which defines a relationship between a performance parameter, a fatigue life estimation, the combination of physical and control parameters and the plurality of wind flow characteristics, to at least some of the plurality of combinations in the database to determine values of the performance parameter and the fatigue life estimation for those combinations; and selecting one of the combinations of physical and control parameters as the configuration of the wind turbine for the target location on the basis of the performance parameter and fatigue life estimation values.
    Type: Grant
    Filed: November 23, 2015
    Date of Patent: November 10, 2020
    Assignee: VESTAS WIND SYSTEMS A/S
    Inventors: Kelvin Hales, Chris Spruce
  • Patent number: 10746160
    Abstract: Generating a control schedule for a wind turbine, the control schedule indicating how the turbine maximum power level varies over time. Generating the control schedule includes determining a value indicative of the current remaining fatigue lifetime of the turbine, or one or more turbine components, based on measured wind turbine site and/or operating data; applying an optimisation function that varies an initial control schedule to determine an optimised control schedule by varying the trade off between energy capture and fatigue life consumed by the turbine or the one or more turbine components until an optimised control schedule is determined.
    Type: Grant
    Filed: June 22, 2016
    Date of Patent: August 18, 2020
    Assignee: VESTAS WIND SYSTEMS A/S
    Inventors: Chris Spruce, Chakradhar Byreddy, Kelvin Hales, Judith Turner
  • Patent number: 10544779
    Abstract: A method is disclosed for controlling a wind turbine generator to provide power above a rated level. The wind turbine includes one or more electrical components that conduct current from the internal generator to supply the external grid. The control method calculates the maximum current that the electrical components can carry at the ambient temperature. The calculated current is combined with a measurement of the voltage and an estimate of reactive power in the system to give a maximum power at which the wind turbine can operate without the maximum allowable current being exceeded for the electrical components. The electrical components may be housed in the main electrical panel of the wind turbine.
    Type: Grant
    Filed: November 23, 2015
    Date of Patent: January 28, 2020
    Assignee: VESTAS WIND SYSTEMS A/S
    Inventors: Kelvin Hales, Chris Spruce, Søren Lund Bjerregaard, Poul Oslo Rasmussen
  • Patent number: 10480485
    Abstract: The present invention relates to a method and control system comprising at least one cable temperature sensor for measuring cable temperature values for at least one power collection cable (50, 55) connected to a wind turbine (20) and a controller (110) arranged to generate and output an overrating control signal to the wind turbine (20). The output overrating control signal sets an amount by which the power output of the wind turbine (20) is to be overrated. It is determined whether the measured cable temperature values exceed a temperature set point and modifying the overrating control signal to reduce the amount of overrating if the temperature set point is exceeded.
    Type: Grant
    Filed: October 16, 2015
    Date of Patent: November 19, 2019
    Assignee: VESTAS WIND SYSTEMS A/S
    Inventors: Kelvin Hales, Chris Spruce
  • Patent number: 10436178
    Abstract: A method is disclosed for controlling a wind turbine generator to provide power above a rated level based upon operational constraints. The wind turbine includes an over-rating controller that calculates an over-rating power demand in response to the values of one or more operating parameters, and communicates this demand to the generator. An over-rating command value is calculated according to set points of the operating parameter(s), the calculation taking into account the extent to which the operating parameter differs from these set points. The over-rating command value may vary proportionately with the difference between the operating parameter and the associated set point. If multiple operating parameters are used then the over-rating power demand may correspond to the minimum over-rating command value. Furthermore, the power demand maybe communicated to wind turbine generators individually, or may be calculated for a wind turbine park.
    Type: Grant
    Filed: March 12, 2014
    Date of Patent: October 8, 2019
    Assignee: VESTAS WIND SYSTEMS A/S
    Inventors: Kelvin Hales, Chris Spruce
  • Publication number: 20190294741
    Abstract: A method is disclosed for determining an individual maximum power level for one or more wind turbines in a wind power plant. The method comprises storing a wind turbine type maximum power level for one or more types of the one or more wind turbines, storing one or more fatigue load values relating to a range of power levels for each of the one or more types wind turbine, and storing one or more parameters relating to site conditions at the wind power plant. The method further comprises determining, based on at least the stored one or more fatigue load values and the stored one or more parameters, the individual maximum power level for each wind turbine of at least a first type of the one or more types.
    Type: Application
    Filed: June 10, 2019
    Publication date: September 26, 2019
    Inventors: Chris SPRUCE, Kelvin HALES
  • Patent number: 10318666
    Abstract: The present invention relates to determining and setting wind turbine type maximum power level (301) and individual wind turbine maximum power level (308) for over-rating control.
    Type: Grant
    Filed: July 16, 2014
    Date of Patent: June 11, 2019
    Assignee: VESTAS WIND SYSTEMS A/S
    Inventors: Chris Spruce, Kelvin Hales
  • Patent number: 10294922
    Abstract: Methods and systems for reducing an output power of a group of wind turbines are provided. A measure of life usage by at least one component of each of a plurality of the turbines is determined, and is compared to a threshold value for life usage for the component. Power output is preferentially reduced from those turbines having at least one component for which the measure of life usage exceeds the corresponding threshold value.
    Type: Grant
    Filed: March 13, 2014
    Date of Patent: May 21, 2019
    Assignee: VESTAS WIND SYSTEMS A/S
    Inventors: Chris Spruce, Kelvin Hales
  • Publication number: 20180187648
    Abstract: A method of controlling a wind turbine is provided. Data is obtained that identifies, based on forecast data, one or more future periods of time during which it would be desirable to over-rate the wind turbine, and measures of the fatigue life consumed by one or more turbine components are determined. The total fatigue life consumed by the one or more turbine components is limited prior to the one or more periods of time by controlling the power output of the wind turbine, in advance of the one or more periods of time, based upon the measure of the fatigue life consumed by the one or more turbine components. For example the overall rate of consumption of fatigue life by the one or more turbine components may be reduced prior to the one or more periods of time commencing. The wind turbine is then over-rated during the one or more identified periods. A corresponding wind turbine and wind power plant controller is also provided.
    Type: Application
    Filed: June 22, 2016
    Publication date: July 5, 2018
    Inventors: Chris SPRUCE, Kelvin HALES (DECEASED), Judith TURNER
  • Publication number: 20180180025
    Abstract: A method of generating a control schedule for a wind turbine is provided, the control schedule indicating how the turbine maximum power level varies over time, the method comprising: receiving input indicative of the maximum number of times that each of one or more turbine components are to be replaced over the remaining lifetime of the turbine; determining a value indicative of the current remaining fatigue lifetime of the turbine, or one or more of the turbine components, based on measured wind turbine site and/or operating data; and varying a parameter of an initial predefined control schedule that specifies how the turbine maximum power level varies over time.
    Type: Application
    Filed: June 29, 2016
    Publication date: June 28, 2018
    Inventors: Chris SPRUCE, Kelvin HALES, Judith TURNER
  • Publication number: 20180180026
    Abstract: A method of generating a control schedule for a wind turbine is provided, the control schedule indicating how the turbine maximum power level varies over time, the method comprising: determining a value indicative of the current remaining fatigue lifetime of the turbine, or one or more turbine components, based on measured wind turbine site and/or operating data; applying an optimisation function that varies an initial control schedule to determine an optimised control schedule by varying the trade off between energy capture and fatigue life consumed by the turbine or the one or more turbine components until an optimised control schedule is determined, the optimisation including: estimating future fatigue lifetime consumed by the turbine or turbine component over the duration of the varied control schedule based on the current remaining fatigue lifetime and the varied control schedule; and constraining the optimisation of the control schedule according to one or more input constraints; wherein the input const
    Type: Application
    Filed: June 22, 2016
    Publication date: June 28, 2018
    Inventors: Chris SPRUCE, Chakradhar BYREDDY, Kelvin HALES, Judith TURNER
  • Publication number: 20170356420
    Abstract: A method is disclosed for controlling a wind turbine generator to provide power above a rated level. The wind turbine includes one or more electrical components that conduct current from the internal generator to supply the external grid. The control method calculates the maximum current that the electrical components can carry at the ambient temperature. The calculated current is combined with a measurement of the voltage and an estimate of reactive power in the system to give a maximum power at which the wind turbine can operate without the maximum allowable current being exceeded for the electrical components. The electrical components may be housed in the main electrical panel of the wind turbine.
    Type: Application
    Filed: November 23, 2015
    Publication date: December 14, 2017
    Inventors: Kelvin HALES (DECEASED), Chris SPRUCE, Søren Lund BJERREGAARD, Poul Oslo RASMUSSEN
  • Publication number: 20170328346
    Abstract: Determination of Wind Turbine Configuration The present invention relates to a method and computer system for determining a configuration of a wind turbine of a given wind turbine type, the method comprising the steps of: storing in a database a plurality of combinations of physical and control parameters of the wind turbine that can be varied; determining a plurality of wind flow characteristics at a target location; applying a function which defines a relationship between a performance parameter, a fatigue life estimation, the combination of physical and control parameters and the plurality of wind flow characteristics, to at least some of the plurality of combinations in the database to determine values of the performance parameter and the fatigue life estimation for those combinations; and selecting one of the combinations of physical and control parameters as the configuration of the wind turbine for the target location on the basis of the performance parameter and fatigue life estimation values.
    Type: Application
    Filed: November 23, 2015
    Publication date: November 16, 2017
    Inventors: Kelvin HALES (DECEASED), Chris Spruce
  • Publication number: 20170248123
    Abstract: The present invention relates to a method and control system comprising at least one cable temperature sensor for measuring cable temperature values for at least one power collection cable (50, 55) connected to a wind turbine (20) and a controller (110) arranged to generate and output an overrating control signal to the wind turbine (20). The output overrating control signal sets an amount by which the power output of the wind turbine (20) is to be overrated. It is determined whether the measured cable temperature values exceed a temperature set point and modifying the overrating control signal to reduce the amount of overrating if the temperature set point is exceeded.
    Type: Application
    Filed: October 16, 2015
    Publication date: August 31, 2017
    Inventors: Kelvin HALES, Chris SPRUCE
  • Publication number: 20170096983
    Abstract: A method is disclosed for controlling a wind turbine generator to provide power above a rated level based upon operational atonal constraints. The wind turbine includes an over-rating controller that calculates an over-rating power demand in response to the values of one or more operating parameters, and communicates this demand to the generator. An over- rating command value is calculated according to set points of the operating parameter(s), the calculation taking into account the extent to which the operating parameter differs from these set points. The over-rating command value may vary proportionately with the difference between the operating parameter and the associated set point. If multiple operating parameters are used then the over-rating power demand may correspond to the minimum over-rating command value. Furthermore, the power demand maybe communicated to wind turbine generators individually, or may be calculated for a wind turbine park.
    Type: Application
    Filed: March 12, 2014
    Publication date: April 6, 2017
    Inventors: Kelvin HALES (DECEASED), Chris SPRUCE