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    • 3. 发明申请
    • METHODS AND SYSTEMS FOR GENERATING WIND TURBINE CONTROL SCHEDULES
    • 用于生成风力涡轮机控制调度的方法和系统
    • WO2017000952A1
    • 2017-01-05
    • PCT/DK2016/050208
    • 2016-06-22
    • VESTAS WIND SYSTEMS A/S
    • SPRUCE, ChrisBYREDDY, ChakradharTURNER, Judith
    • F03D7/04F03D7/02F03D80/50
    • F03D80/50F03D7/0292F03D7/046F03D7/048F05B2270/20F05B2270/332F05B2270/335Y02E10/723
    • 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 constraints include a target minimum wind turbine lifetime and the optimisation further includes varying an initial value for the number of component replacements, for one or more components, to be performed over the course of the schedule to determine a maximum number of component replacements.
    • 提供了一种生成风力涡轮机的控制调度的方法,所述控制调度表示所述涡轮机最大功率电平随时间变化的方式,所述方法包括:确定指示所述涡轮机的当前剩余疲劳寿命的值,或者一个或多个 涡轮机部件,基于测量的风力涡轮机现场和/或操作数据; 应用优化功能,其改变初始控制调度以通过改变由所述涡轮机或所述一个或多个涡轮机部件消耗的能量捕捉和疲劳寿命之间的折衷来确定优化的控制调度,直到确定优化的控制调度,所述优化包括: 基于当前的剩余疲劳寿命和变化的控制进度来估计在变化的控制进度期间由涡轮机或涡轮机部件消耗的未来疲劳寿命; 并且根据一个或多个输入约束约束所述控制调度的优化; 其中所述输入约束包括目标最小风力涡轮机寿命,并且所述优化进一步包括改变要在所述时间表过程中执行的一个或多个部件的部件更换次数的初始值,以确定部件更换的最大数量 。
    • 4. 发明申请
    • METHODS AND SYSTEMS FOR GENERATING WIND TURBINE CONTROL SCHEDULES
    • 用于生成风力涡轮机控制调度的方法和系统
    • WO2017000951A1
    • 2017-01-05
    • PCT/DK2016/050204
    • 2016-06-21
    • VESTAS WIND SYSTEMS A/S
    • SPRUCE, ChrisBYREDDY, Chakradhar
    • F03D7/04F03D7/02F03D80/50
    • F03D7/046F03D7/0292F03D7/048F03D80/50F05B2270/20F05B2270/332F05B2270/335Y02E10/723
    • 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 constraints include a maximum number of permitted component replacements for one or more turbine components and the optimisation further includes varying an initial value for a wind turbine lifetime to determine a target wind turbine lifetime.
    • 提供了一种生成风力涡轮机的控制调度表的方法,所述控制调度表示所述涡轮机最大功率电平随时间变化的方式,所述方法包括:确定表示所述涡轮机的当前剩余疲劳寿命的值,或者一个或多个 涡轮机部件,基于测量的风力涡轮机位置和/或操作数据;应用优化功能,其改变初始控制计划以通过改变能量捕获和涡轮机消耗的疲劳寿命之间的折衷来确定优化的控制计划, 更多的涡轮机组件,直到确定优化的控制进度,该优化包括:基于当前剩余的疲劳寿命和变化的控制进度,在变化的控制进度的持续时间内估计涡轮机或涡轮机部件消耗的未来疲劳寿命; 以及根据一个或多个输入约束约束所述控制调度的优化; 其中所述输入约束包括用于一个或多个涡轮机部件的允许部件替换的最大数量,并且所述优化进一步包括改变风力涡轮机寿命的初始值以确定目标风力涡轮机寿命。
    • 6. 发明申请
    • METHODS AND SYSTEMS FOR GENERATING WIND TURBINE CONTROL SCHEDULES
    • 用于生成风力涡轮机控制调度的方法和系统
    • WO2017000950A1
    • 2017-01-05
    • PCT/DK2016/050203
    • 2016-06-21
    • VESTAS WIND SYSTEMS A/S
    • SPRUCE, ChrisBYREDDY, Chakradhar
    • F03D7/04F03D7/02F03D80/50
    • F03D7/046F03D7/0292F03D7/048F03D80/50F05B2270/20F05B2270/332F05B2270/335Y02E10/723
    • Methods and Systems for Generating Wind Turbine Control Schedules 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 optimisation further includes varying an initial value for a wind turbine lifetime, and varying an initial value for the number of component replacements, for one or more components, to be performed over the course of the schedule to determine a combination of the number of component replacements for one or more turbine components and a target minimum wind turbine lifetime.
    • 用于生成风力涡轮机控制计划的方法和系统提供了一种生成风力涡轮机的控制计划的方法,所述控制计划表示所述涡轮机最大功率电平随时间变化的方式,所述方法包括:确定指示当前剩余的值 基于测量的风力涡轮机位置和/或操作数据,涡轮机或一个或多个涡轮机部件的疲劳寿命; 应用优化功能,其改变初始控制调度以通过改变由所述涡轮机或所述一个或多个涡轮机部件消耗的能量捕捉和疲劳寿命之间的折衷来确定优化的控制调度,直到确定优化的控制调度,所述优化包括: 基于当前的剩余疲劳寿命和变化的控制进度来估计在变化的控制进度期间由涡轮机或涡轮机部件消耗的未来疲劳寿命; 并且根据一个或多个输入约束约束所述控制调度的优化; 其中所述优化进一步包括改变风力涡轮机寿命的初始值,以及改变要在所述时间表过程中执行的一个或多个部件的部件更换次数的初始值,以确定所述次数的组合 一个或多个涡轮机部件的部件更换和目标最小风力涡轮机寿命。