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    • 1. 发明申请
    • CONTROL CIRCUIT AND METHOD FOR CONVERTERS OF WIND TURBINES
    • 风轮转换器的控制电路和方法
    • US20130170254A1
    • 2013-07-04
    • US13824255
    • 2011-12-14
    • Heinz-Hermann Letas
    • Heinz-Hermann Letas
    • H02M5/42
    • H02M5/42H02J3/1892H02P9/007Y02E10/763
    • Controlling a converter of a wind turbine is disclosed. The converter is connected to a rotor of a doubly fed asynchronous generator in order to feed electrical energy into an electric network. The converter comprises a network-side inverter, a generator-side inverter, and a controller, which outputs target values for demanded reactive power to at least one of the inverters. A reactive power target signal is determined for the portion that the network-side inverter contributes to the demanded reactive power QT, a slip signal is determined from the frequency of the network and the rotational speed of the generator, a gain value is calculated according to the slip signal, and the gain value is modified according to the reactive power target signal for the network-side inverter. The distribution of the reactive power between the two inverters is thus optimized over a wide operating range, not only at individual predetermined operating points.
    • 公开了控制风力涡轮机的转换器。 转换器连接到双馈异步发电机的转子,以便将电能馈入电网。 转换器包括网络侧逆变器,发电机侧逆变器和控制器,其向至少一个逆变器输出所需无功功率的目标值。 确定网络侧逆变器对需求无功功率QT贡献的部分的无功功率目标信号,根据网络的频率和发电机的转速来确定滑移信号,增益值根据 滑差信号和增益值根据网络侧逆变器的无功功率目标信号进行修改。 因此,两个逆变器之间的无功功率的分布在宽的工作范围内被优化,不仅在各个预定的工作点。
    • 3. 发明授权
    • Rotor blade adjustment device for a wind turbine
    • 风力发电机用转子叶片调整装置
    • US08344532B2
    • 2013-01-01
    • US12600453
    • 2008-05-14
    • Heinz-Hermann Letas
    • Heinz-Hermann Letas
    • F03P9/04
    • F03D7/0224F03D7/0268F05B2260/70F05B2260/76Y02E10/721Y02E10/723
    • A wind turbine includes a rotor having adjustable rotor blades for driving a generator and an adjusting device for the rotor blades provided with an actuator that comprises at least an excitation winding. The adjusting device includes a torque-reducing device that automatically reduces drag torque of the actuator. The torque-reducing device includes a current divider that switches the current through the excitation winding in such a manner that the current flows completely through the excitation coil when the motor is in operation and the current only partly flows through the excitation coil when coasting (slip operation). As a result, when coasting, the magnetization of the excitation winding is reduced about the adjusting device, whereby the increase of the speed torque characteristic curve can be determined, thus improving the ratio of the adjusting device when coasting.
    • 风力涡轮机包括具有用于驱动发电机的可调节转子叶片的转子和用于具有至少包括励磁绕组的致动器的转子叶片的调节装置。 调节装置包括能够自动减小致动器的阻力矩的减速装置。 减速装置包括分流器,其以电流在运行中完全流过励磁线圈的方式切换电流通过励磁绕组,并且当滑行时电流仅部分地流过励磁线圈 操作)。 结果,当惯性滑动时,励磁绕组的磁化随着调节装置而减小,从而可以确定速度转矩特性曲线的增加,从而提高了惯性滑行时调节装置的比例。
    • 6. 发明授权
    • Control circuit and method for converters of wind turbines
    • 风力发电机转换器的控制电路和方法
    • US08934270B2
    • 2015-01-13
    • US13824255
    • 2011-12-14
    • Heinz-Hermann Letas
    • Heinz-Hermann Letas
    • H02M5/458H02M5/42H02J3/18H02P9/00
    • H02M5/42H02J3/1892H02P9/007Y02E10/763
    • Controlling a converter of a wind turbine is disclosed. The converter is connected to a rotor of a doubly fed asynchronous generator in order to feed electrical energy into an electric network. The converter comprises a network-side inverter, a generator-side inverter, and a controller, which outputs target values for demanded reactive power to at least one of the inverters. A reactive power target signal is determined for the portion that the network-side inverter contributes to the demanded reactive power QT, a slip signal is determined from the frequency of the network and the rotational speed of the generator, a gain value is calculated according to the slip signal, and the gain value is modified according to the reactive power target signal for the network-side inverter. The distribution of the reactive power between the two inverters is thus optimized over a wide operating range, not only at individual predetermined operating points.
    • 公开了控制风力涡轮机的转换器。 转换器连接到双馈异步发电机的转子,以便将电能馈入电网。 转换器包括网络侧逆变器,发电机侧逆变器和控制器,其向至少一个逆变器输出所需无功功率的目标值。 确定网络侧逆变器对需求无功功率QT贡献的部分的无功功率目标信号,根据网络的频率和发电机的转速来确定滑移信号,增益值根据 滑差信号和增益值根据网络侧逆变器的无功功率目标信号进行修改。 因此,两个逆变器之间的无功功率的分布在宽的工作范围内被优化,不仅在各个预定的工作点。