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    • 3. 发明授权
    • Turbine engine starter/generator, and method for the control thereof
    • 涡轮发动机启动器/发电机及其控制方法
    • US08796871B2
    • 2014-08-05
    • US13505234
    • 2010-10-21
    • Eric De Wergifosse
    • Eric De Wergifosse
    • F02N11/04H02P9/04H02K11/04H02P1/50F02C7/275H02K19/14H02K19/26H02P9/08H02K7/14H02K29/03H02P9/00F02N11/08
    • H02K11/042F02C7/275F02N11/04F02N11/08H02K7/14H02K19/14H02K19/26H02K29/03H02P1/50H02P9/08H02P2101/30
    • A turbine engine starter-generator including a main electrical machine including a stator and rotor with a wound rotor inducer and damper bars forming a cage, and an exciter including a stator inducer and rotor with rotor windings connected to the rotor inducer of the main electrical machine via a rotary rectifier. During a first starting stage, the electrical machine operates in asynchronous motor mode by injecting AC into its stator windings, a starting torque being generated by the damper bars, without the rotor inducer of the main electrical machine contributing significantly to generating starting torque. Then in a second starting stage, the main electrical machine operates in synchronous motor mode by injecting AC into its stator windings, while feeding its rotor inducer with DC via the exciter, the change from the first stage to the second stage taking place when rotation speed of the shaft reaches a predetermined value.
    • 一种涡轮发动机起动器 - 发电机,包括具有定子和转子的主电机,所述定子和转子具有缠绕的转子导流器和形成保持架的阻尼杆,以及包括定子引导器和转子的励磁机,转子绕组连接到主电机的转子引导器 通过旋转整流器。 在第一起动阶段期间,电机通过将AC注入其定子绕组中而以异步电动机模式操作,由阻尼器杆产生的起动转矩,而主电机的转子引导器对于产生起动转矩的贡献显着。 然后在第二起动阶段,主电机通过将AC注入其定子绕组中,同时通过励磁机向其转子诱导器供电,同时在同步电动机模式下运行,当转速发生时,从第一级到第二级的变化 轴达到预定值。
    • 4. 发明申请
    • TURBINE ENGINE STARTER/GENERATOR, AND METHOD FOR THE CONTROL THEREOF
    • 涡轮发动机起动器/发电机及其控制方法
    • US20120211981A1
    • 2012-08-23
    • US13505234
    • 2010-10-21
    • Eric De Wergifosse
    • Eric De Wergifosse
    • F02N11/04
    • H02K11/042F02C7/275F02N11/04F02N11/08H02K7/14H02K19/14H02K19/26H02K29/03H02P1/50H02P9/08H02P2101/30
    • A turbine engine starter-generator including a main electrical machine including a stator and rotor with a wound rotor inducer and damper bars forming a cage, and an exciter including a stator inducer and rotor with rotor windings connected to the rotor inducer of the main electrical machine via a rotary rectifier. During a first starting stage, the electrical machine operates in asynchronous motor mode by injecting AC into its stator windings, a starting torque being generated by the damper bars, without the rotor inducer of the main electrical machine contributing significantly to generating starting torque. Then in a second starting stage, the main electrical machine operates in synchronous motor mode by injecting AC into its stator windings, while feeding its rotor inducer with DC via the exciter, the change from the first stage to the second stage taking place when rotation speed of the shaft reaches a predetermined value.
    • 一种涡轮发动机起动器 - 发电机,包括具有定子和转子的主电机,所述定子和转子具有缠绕的转子导流器和形成保持架的阻尼杆,以及包括定子引导器和转子的励磁机,转子绕组连接到主电机的转子引导器 通过旋转整流器。 在第一起动阶段期间,电机通过将AC注入其定子绕组中而以异步电动机模式操作,由阻尼杆产生的起动转矩,而主电动机的转子引导器对于产生起动转矩的贡献很大。 然后在第二起动阶段,主电机通过将AC注入其定子绕组中,同时通过励磁机向其转子诱导器供电,同时在同步电动机模式下运行,当转速发生时,从第一级到第二级的变化 轴达到预定值。
    • 7. 发明授权
    • Superconducting electric motor
    • 超导电动机
    • US07453174B1
    • 2008-11-18
    • US09371692
    • 1999-08-10
    • Swarn S. Kalsi
    • Swarn S. Kalsi
    • H02K9/00H02K3/46
    • H02K55/04H02K19/14Y02E40/625
    • A superconducting motor which operates in a synchronous mode of operation, can also be operated in an induction mode in the event that the superconducting components of the motor lose their superconducting properties (e.g., due to cooling system failure). The superconducting electric motor includes a rotor assembly having at least one superconducting winding which, in operation, generates a flux path within the rotor assembly, and a support member which supports the at least one superconducting winding. The rotor assembly is configured to operate in a synchronous mode of operation at temperatures in which the superconducting winding exhibits superconducting characteristics and in a steady-state induction mode of operation at temperatures in which the superconducting winding exhibits non-superconducting characteristics.
    • 如果电动机的超导部件失去其超导特性(例如,由于冷却系统故障),则以同步运行模式工作的超导电动机也可以以感应模式操作。 超导电动机包括具有至少一个超导绕组的转子组件,其在操作中在转子组件内产生通量路径,以及支撑构件,其支撑至少一个超导绕组。 转子组件被配置为在超导绕组表现出超导特性的温度下以及在超导绕组表现出非超导特性的温度下处于稳态感应操作模式中的同步工作模式下工作。
    • 10. 发明授权
    • Controlled reluctance AC induction motor
    • 控制磁阻交流感应电动机
    • US06888279B2
    • 2005-05-03
    • US10691379
    • 2003-10-22
    • Lambert Haner
    • Lambert Haner
    • H02K17/26H02K19/10H02K19/14H02K29/06H02P25/08H02K17/16H02K17/02
    • H02K19/103H02K19/14H02K29/06H02P25/08
    • An electric motor operated by AC current, that includes a stator and a rotor supported for rotation about an axis relative to the stator. The stator is provided with field windings angularly distributed about the rotor axis and capable of producing a magnetic field vector in the space of the rotor. Circuitry delivers AC current to the windings in a manner that produces an AC magnetic field vector that moves around the axis of the rotor. The rotor has a construction, such as an axially extending conductive loop, that changes its reluctance in the AC magnetic field depending on its orientation to the AC magnetic field vector whereby the rotor is caused to rotate in synchronization with the movement of the AC magnetic field vector.
    • 一种由AC电流操作的电动机,其包括一个定子和一个转子,用于相对于定子围绕一个轴线旋转。 定子设置有围绕转子轴线成角度地分布的场绕组,并且能够在转子的空间中产生磁场矢量。 电路以产生绕转子轴线移动的交流磁场矢量的方式将交流电流提供给绕组。 转子具有诸如轴向延伸的导电回路的结构,其根据其对AC磁场矢量的取向改变其在交流磁场中的磁阻,从而使转子与AC磁场的移动同步地旋转 向量。