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    • 1. 发明申请
    • METHOD FOR THE OPERATION OF A WIND ENERGY PLANT
    • 风力发电厂运行方法
    • US20090115191A1
    • 2009-05-07
    • US12259703
    • 2008-10-28
    • Karsten WarfenJens Altemark
    • Karsten WarfenJens Altemark
    • H02P9/04
    • F03D7/0264F03D7/0224F03D7/0244F03D17/00F05B2260/83F05B2260/90F05B2270/328Y02E10/723
    • The invention relates to a method for the operation of a wind energy plant (10), wherein the wind energy plant (10) has a rotor (11) with a rotor axis and at least one rotor blade (15, 15′) arranged on the rotor (11), wherein the rotor blade (15, 15′) is adjustable or adjusted around a rotor blade axis with a predetermined rotor blade pitch angle. Further, at least one rotor blade (15, 15′) is rotated into an idle position, the rotation of the rotor blade (15, 15′) is braked after a first predetermined rotational position of the rotor blade (15, 15′) is reached and the stand-still position of the rotor blade (15, 15′) reached as a result of the braking procedure is captured. Furthermore, the invention relates to a wind energy plant (10) with a rotor (11) and at least one angle-adjustable rotor blade (15, 15′) arranged on the rotor (11).
    • 本发明涉及一种用于操作风力发电设备(10)的方法,其中风能设备(10)具有转子(11),转子轴线和至少一个转子叶片(15,15')布置在 转子(11),其中转子叶片(15,15')以预定的转子叶片桨距角围绕转子叶片轴线可调节或调节。 此外,至少一个转子叶片(15,15')旋转到空转位置,转子叶片(15,15')的旋转在转子叶片(15,15')的第一预定旋转位置之后被制动, 并且捕获由于制动过程而到达转子叶片(15,15')的静止位置。 此外,本发明涉及一种具有转子(11)的风力发电设备(10)和设置在转子(11)上的至少一个角度可调的转子叶片(15,15')。
    • 2. 发明授权
    • Method for the operation of a wind energy plant
    • 风力发电厂运行方法
    • US08157523B2
    • 2012-04-17
    • US12259703
    • 2008-10-28
    • Karsten WarfenJens Altemark
    • Karsten WarfenJens Altemark
    • B64C11/30
    • F03D7/0264F03D7/0224F03D7/0244F03D17/00F05B2260/83F05B2260/90F05B2270/328Y02E10/723
    • The invention relates to a method for the operation of a wind energy plant (10), wherein the wind energy plant (10) has a rotor (11) with a rotor axis and at least one rotor blade (15, 15′) arranged on the rotor (11), wherein the rotor blade (15, 15′) is adjustable or adjusted around a rotor blade axis with a predetermined rotor blade pitch angle. Further, at least one rotor blade (15, 15′) is rotated into an idle position, the rotation of the rotor blade (15, 15′) is braked after a first predetermined rotational position of the rotor blade (15, 15′) is reached and the stand-still position of the rotor blade (15, 15′) reached as a result of the braking procedure is captured. Furthermore, the invention relates to a wind energy plant (10) with a rotor (11) and at least one angle-adjustable rotor blade (15, 15′) arranged on the rotor (11).
    • 本发明涉及一种用于操作风力发电设备(10)的方法,其中风能设备(10)具有转子(11),转子轴线和至少一个转子叶片(15,15')布置在 转子(11),其中转子叶片(15,15')以预定的转子叶片桨距角围绕转子叶片轴线可调节或调节。 此外,至少一个转子叶片(15,15')旋转到空转位置,转子叶片(15,15')的旋转在转子叶片(15,15')的第一预定旋转位置之后被制动, 并且捕获由于制动过程而到达转子叶片(15,15')的静止位置。 此外,本发明涉及一种具有转子(11)的风力发电设备(10)和设置在转子(11)上的至少一个角度可调的转子叶片(15,15')。
    • 3. 发明授权
    • Method and system for monitoring a wind energy installation
    • 用于监测风能装置的方法和系统
    • US08433541B2
    • 2013-04-30
    • US12686049
    • 2010-01-12
    • Jens Altemark
    • Jens Altemark
    • G06F11/30
    • F03D17/00F03D80/50F05B2240/96Y02E10/72
    • A method and system for monitoring the operation of a wind energy installation. State data relating to the wind energy installation is recorded and discrepancies are found between the state data and an associated comparison value. A failure probability of the wind energy installation is determined based on any found discrepancy. An availability value for the wind energy installation is determined from the ratio of the actually produced amount of electrical energy to the total amount of energy which can potentially be produced. The availability value and the failure probability are then combined to form a repair priority, which is associated with the wind energy installation. Accordingly, more uniform operation of wind energy installations can be achieved.
    • 一种用于监测风能设备运行的方法和系统。 记录与风能装置相关的状态数据,并且在状态数据与相关联的比较值之间发现差异。 根据任何发现的差异确定风能安装的故障概率。 根据实际产生的电能量与潜在可能产生的总能量的比率来确定风能装置的可用性值。 然后组合可用性值和故障概率以形成与风能设备相关联的修复优先级。 因此,可以实现风能装置的更均匀的运行。
    • 4. 发明授权
    • Method and system for determining the compatibility of control software with a wind energy installation
    • 确定控制软件与风能设备的兼容性的方法和系统
    • US08260467B2
    • 2012-09-04
    • US12235436
    • 2008-09-22
    • Jens AltemarkMarkus BookAnton Kupper
    • Jens AltemarkMarkus BookAnton Kupper
    • G06F3/00G06F15/177
    • F03D7/047F05B2270/32G06F8/65Y02E10/723Y02P70/523
    • A method and a system are for determining of the compatibility of control software, which is designed for standard parameters, with a wind energy installation which is operated using operating parameters. The method is an automatic method in which the operating parameters of the wind energy installation and the standard parameters of the control software are first transmitted to a computation unit. The computation unit determines discrepancies between the operating parameters and the standard parameters. A decision on compatibility is made on the basis of the discrepancies. The system includes a logic module which is designed to make the decision. This method makes it easier to automatically update the control software for a wind energy installation. There is no longer any need to manually check the compatibility of the new version of the control software before the new version of the control software can be installed.
    • 一种方法和系统用于确定为标准参数设计的控制软件与使用操作参数操作的风能设备的兼容性。 该方法是将风力发电设备的运行参数和控制软件的标准参数首先发送到计算单元的自动方法。 计算单元确定操作参数和标准参数之间的差异。 关于兼容性的决定是基于差异进行的。 该系统包括一个设计用于作出决定的逻辑模块。 这种方法使得更容易自动更新风力发电设备的控制软件。 在新版本的控制软件可以安装之前,不再需要手动检查新版本的控制软件的兼容性。
    • 5. 发明申请
    • METHOD FOR BRAKING STATE MONITORING AND WIND ENERGY INSTALLATION FOR CARRYING OUT THE METHOD
    • 制动状态监测方法和实施方法的风能安装方法
    • US20110238371A1
    • 2011-09-29
    • US13072270
    • 2011-03-25
    • Jens AltemarkMatthias Brueckner
    • Jens AltemarkMatthias Brueckner
    • G06F15/00
    • F03D7/0248F05B2260/80F05B2260/902Y02E10/723
    • A method for determining the state of a braking apparatus of a wind energy installation can include obtaining data relating to load behavior of the braking apparatus, recording a measured value during a time period between a start of a braking process and an end of the braking process, and determining a brake state characteristic value based on the data and the measured value. A wind energy installation for performing the method can include a braking apparatus, a sensor, a control unit configured to instruct the sensor to record a measured value in a time period between a start of a braking process and an end of a braking process, a data memory configured to store data relating to load behavior of the braking apparatus, and a computation module configured to determine a brake state characteristic value based on the data and the measured value.
    • 用于确定风能设备的制动装置的状态的方法可以包括获得与制动装置的负载特性相关的数据,在制动过程开始和制动过程结束之间的时间段期间记录测量值 ,并且基于所述数据和所述测量值来确定制动状态特性值。 用于执行该方法的风能装置可以包括制动装置,传感器,控制单元,其被配置为指示传感器在制动过程开始和制动过程结束之间的时间段内记录测量值, 数据存储器,其被配置为存储与所述制动装置的负载特性相关的数据;以及计算模块,被配置为基于所述数据和所述测量值来确定制动状态特性值。
    • 6. 发明申请
    • Power Control of a Wind Park
    • 风力发电场的功率控制
    • US20080265577A1
    • 2008-10-30
    • US11995309
    • 2006-07-12
    • Jens FortmannJens AltemarkJorg Zeumer
    • Jens FortmannJens AltemarkJorg Zeumer
    • H02P9/04
    • F03D7/0284F03D7/028F03D9/255F03D9/257F05B2240/95F05B2240/96H02J3/16H02J3/1885H02J3/383H02J3/386H02P9/04Y02E10/563Y02E10/723Y02E10/763Y02E40/32Y02E40/34Y10T307/522
    • A method for regulating a wind energy installation including a rotor-driven generator, a converter connected to the generator, and a controller that regulates power emitted into an energy transmission system to within a limit value involves determining a maximum current value in a connection path, determining a current reserve value for power emitted into an energy transmission system, and determining a correction value for following a limit value of the emitted power from the maximum current value and the current reserve value. The wind energy installation and the method for its regulation also includes the use of a limitation device configured to set a phase angle between an emitted current and voltage of an electrical system in response to a selection signal in such a way that primarily active power or primarily reactive power is fed into the energy transmission system when the maximum current value is reached.
    • 一种用于调节包括​​转子驱动的发电机,连接到发电机的转换器和将发射到能量传输系统中的功率调节到限制值内的控制器的风能设备的方法包括确定连接路径中的最大电流值, 确定发射到能量传输系统的功率的当前储备值,以及根据最大电流值和当前储备值确定跟随发射功率的极限值的校正值。 风能装置及其调节方法还包括使用限制装置,该限制装置被配置成响应于选择信号来设置电气系统的发射电流和电压之间的相位角,使得主要有功功率或主要功率 当达到最大电流值时,无功功率被馈送到能量传输系统中。
    • 7. 发明授权
    • Method for the operation of a wind power plant
    • 风力发电厂运行方法
    • US08764393B2
    • 2014-07-01
    • US12663718
    • 2008-04-28
    • Martin Von MutiusJens AltemarkAlf Trede
    • Martin Von MutiusJens AltemarkAlf Trede
    • F03D11/00
    • F03D7/0264F03D17/00F03D80/50F05B2230/80F05B2270/32F05B2270/321Y02E10/723Y02P70/523
    • A method for operating a wind power plant (WEA) before or during the performance of maintenance work on the wind power plant (WEA). At least one physical condition of the surroundings outside the wind power plant (WEA) induced by wind movement outside the wind power plant (WEA) is detected as an external physical condition. At least one physical condition of a component of the wind power plant (WEA) influenced by wind movement outside the wind power plant (WEA) is detected as an internal physical condition. The at least one external physical condition and/or at least one internal physical condition are evaluated. The at least one external physical condition is compared with a predetermined reference value for the external physical condition. The at least one internal physical condition is compared with a predetermined reference value for the internal physical condition. Depending on the comparison, at least one warning message is generated.
    • 在风力发电厂(WEA)进行维护工作之前或期间操作风力发电厂(WEA)的方法。 作为外部物理条件,检测到风力发电厂(WEA)外的风动作用引起的风力发电厂(WEA)外的环境的至少一个物理状况。 作为内部物理条件,检测到风力发电厂(WEA)以外的风动影响的风力发电厂(WEA)的部件的至少一个物理状况。 评估至少一个外部物理条件和/或至少一个内部物理条件。 将至少一个外部物理条件与外部物理条件的预定参考值进行比较。 将至少一个内部物理条件与内部物理条件的预定参考值进行比较。 根据比较,生成至少一个警告消息。
    • 8. 发明授权
    • Wind farm capable of staggered disconnection
    • 风力发电场能够交错断开
    • US08335594B2
    • 2012-12-18
    • US12227200
    • 2007-05-07
    • Jens AltemarkMartin von MutiusDirk Steudel
    • Jens AltemarkMartin von MutiusDirk Steudel
    • G05D11/00
    • F03D7/0268F03D7/048F05B2270/32F05B2270/3201F05B2270/708Y02E10/723
    • The invention relates to a method of operating a wind farm intended for connection to an electric power network, which wind farm includes at least three wind turbine generator systems. At least one actual value for a wind speed or a parameter associated with wind speed is determined for each wind turbine generator system which are divided at least temporarily into predetermined groups. A first disconnect value is assigned to one group of wind turbine generator systems and a second different disconnect value is assigned to a second group of wind turbine generator systems. Actual values are assigned to disconnect values, and compared thereto. When the actual value exceeds the disconnect value the associated group of wind turbine generator systems is automatically disconnected.
    • 本发明涉及一种操作用于连接到电力网络的风力发电场的方法,所述风电场包括至少三个风力发电机系统。 对于至少暂时划分成预定组的每个风力涡轮发电机系统,确定风速或与风速相关联的参数的至少一个实际值。 第一断开值被分配给一组风力涡轮发电机系统,并且第二不同的断开值被分配给第二组风力涡轮发电机系统。 实际值被分配给断开值,并与之进行比较。 当实际值超过断开值时,相关组的风力涡轮发电机系统将自动断开。