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    • 2. 发明申请
    • SYSTEM FOR CONTACTLESS POWER TRANSFER AND A METHOD FOR OPERATING THE SAME
    • 非接触式电力传输系统及其操作方法
    • WO2017173466A1
    • 2017-10-05
    • PCT/US2017/026301
    • 2017-04-06
    • GENERAL ELECTRIC COMPANY
    • RAGHUNATHAN, Arun KumarBRAY, James WilliamPADINHARU, Dileepkumar KanaMAHADEVA IYER, Vishnu
    • H02J50/05H02J50/10
    • A system 10 for contactless power transfer is disclosed. The system 10 includes a first power exchanging element 22 configured to be operatively coupled to a conductor 12 at a first location 26 of the conductor 12, using an electromagnetic field generated between the first power exchanging element 22 and the conductor 12 at an operating frequency of at least two kilohertz. The system also includes a second power exchanging element 30 configured to be operatively coupled to the conductor 12 at a second location 32 of the conductor 12, using the electromagnetic field generated between the first power exchanging element 22 and the conductor 12 at the operating frequency. The electromagnetic field is used to transmit power from the first power exchanging element 22 to the second power exchanging element 30.
    • 公开了一种用于非接触式电力传输的系统10。 系统10包括第一功率交换元件22,该第一功率交换元件22被配置成使用在第一功率交换元件22和导体12之间以工作频率1产生的电磁场在导体12的第一位置26处可操作地耦合到导体12 至少两千赫兹。 该系统还包括第二功率交换元件30,该第二功率交换元件30被配置成使用在工作频率下在第一功率交换元件22和导体12之间产生的电磁场在导体12的第二位置32处可操作地耦合到导体12。 该电磁场被用于将电力从第一电力交换元件22传输到​​第二电力交换元件30.
    • 9. 发明公开
    • GAS TUBE-SWITCHED HIGH VOLTAGE DC POWER CONVERTER
    • 燃气管开关高压直流电力转换器
    • EP3240173A1
    • 2017-11-01
    • EP17167336.1
    • 2017-04-20
    • General Electric Company
    • SHE, XuBRAY, James WilliamSOMMERER, Timothy JohnCHOKHAWALA, Rahul
    • H02M3/33H02M3/335
    • A direct current (DC)-DC converter (100) includes a transformer (102) and a gas tube-switched inverter circuit (108). The transformer includes a primary winding (104) and a secondary winding (106). The gas tube-switched inverter circuit includes first and second inverter load terminals (116) and first and second inverter input terminals (112,114). The first and second inverter load terminals are coupled to the primary winding. The first and second inverter input terminals are couplable to a DC node. The gas tube-switched inverter circuit further includes a plurality of gas tube switches (120,122,124,126) respectively coupled between the first and second inverter load terminals and the first and second inverter input terminals. The plurality of gas tube switches is configured to operate to generate an alternating current (AC) voltage at the primary winding.
    • 直流(DC)-DC转换器(100)包括变压器(102)和气体管开关逆变器电路(108)。 变压器包括初级绕组(104)和次级绕组(106)。 气体管切换逆变器电路包括第一和第二逆变器负载端子(116)以及第一和第二逆变器输入端子(112,114)。 第一和第二逆变器负载端子耦合到初级绕组。 第一和第二逆变器输入端子可耦合到DC节点。 气体管切换逆变器电路还包括分别耦合在第一和第二逆变器负载端子与第一和第二逆变器输入端子之间的多个气体管开关(120,122,124,126)。 多个气体管开关被配置为操作以在初级绕组处产生交流(AC)电压。
    • 10. 发明公开
    • PERMANENT MAGNET MACHINE
    • PERMANENTMAGNETMASCHINE
    • EP2961042A1
    • 2015-12-30
    • EP15173429.0
    • 2015-06-23
    • General Electric Company
    • JOSHI, Narendra DigamberSHAH, Manoj RamprasadBRAY, James WilliamVONDRELL, Randy MarinusMURROW, Kurt DavidHAMEL, Jeffrey AnthonyMARTIN, Samuel Jacob
    • H02K1/27
    • H02K1/28H02K1/278Y02E10/725
    • A permanent magnet machine (10,54,56,60) and a rotor assembly (12,62) for the permanent magnet machine. The permanent magnet machine includes a stator assembly (14,55,64) including a stator core (44) configured to generate a magnetic field and extending along a longitudinal axis (13) with an inner surface defining a cavity (48) and a rotor assembly (12,62) including a rotor core and a rotor shaft. The rotor core is disposed inside the stator cavity and configured to rotate about the longitudinal axis. The rotor assembly further including a plurality of permanent magnets (24,68) for generating a magnetic field which interacts with the stator magnetic field to produce torque. The permanent magnets are disposed within one or more cavities formed in a sleeve component (22,66). The sleeve component configured to include a plurality of cavities or voids (32,70) therein and thus provide minimal weight to the permanent magnet machine. The permanent magnet machine providing increased centrifugal load capacity, increased power density and improved electrical performance.
    • 永磁机(10,54,56,60)和用于永磁机的转子组件(12,62)。 永磁体机器包括定子组件(14,55,64),该定子组件包括定子芯(44),该定子芯构造成产生磁场并且沿着纵向轴线(13)延伸,内表面限定空腔(48)和转子 组件(12,62)包括转子芯和转子轴。 转子芯设置在定子腔内部并且构造成围绕纵向轴线旋转。 转子组件还包括用于产生与定子磁场相互作用以产生转矩的磁场的多个永磁体(24,68)。 永磁体设置在形成在套筒部件(22,66)内的一个或多个空腔内。 套筒部件构造成在其中包括多个空腔(32,70),从而为永磁体机器提供最小的重量。 永磁机提供增加的离心负载能力,提高功率密度和改善电气性能。