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    • 3. 发明申请
    • METHOD AND SYSTEM FOR LONG RANGE WIRELESS POWER TRANSFER
    • 用于长距离无线电力传输的方法和系统
    • US20120010079A1
    • 2012-01-12
    • US13151020
    • 2011-06-01
    • RAYMOND J. SEDWICK
    • RAYMOND J. SEDWICK
    • H01L39/02H01L39/12H01F38/14
    • H03B15/003H02J7/025H02J17/00H02J50/12H02J50/50H02J50/70Y10T307/25
    • A wireless energy transfer system includes a primary and one (or more) secondary oscillators for transferring energy therebetween when resonating at the same frequency. The long range (up to and beyond 100 m) efficient (as high as and above 50%) energy transfer is achieved due to minimizing (or eliminating) losses in the system. Superconducting materials are used for all current carrying elements, dielectrics are either avoided altogether, or those are used with a low dissipation factor, and the system is operated at reduced frequencies (below 1 MHz). The oscillators are contoured as a compact flat coil formed from a superconducting wire material. The energy wavelengths exceed the coils diameter by several orders of magnitude. The reduction in radiative losses is enhanced by adding external dielectric-less electrical capacitance to each oscillator coil to reduce the operating frequency. The dielectric strength of the capacitor is increased by applying a magnetic cross-field to the capacitor to impede the electrons motion across an air gap defined between coaxial cylindrical electrodes.
    • 无线能量传递系统包括在相同频率下谐振时,用于在其间传递能量的主振荡器和一个(或更多个)次振荡器。 由于系统中的(或消除)损失最小化(或消除),实现了长距离(高达100 m以上)高效(高达50%以上)的能量传输。 超导材料用于所有载流元件,电介质完全可以避免,或者以低损耗因子使用,系统以低频(低于1 MHz)工作。 振荡器的轮廓是由超导线材形成的紧凑型扁平线圈。 能量波长超过线圈直径几个数量级。 通过向每个振荡器线圈添加外部无电介质电容来降低工作频率,可以增强辐射损耗的降低。 通过向电容器施加磁交变场来增加电容器的介电强度,以阻止跨同轴圆柱形电极间限定的气隙的电子运动。
    • 5. 发明授权
    • Method and system for long range wireless power transfer
    • 远程无线电力传输的方法和系统
    • US08994221B2
    • 2015-03-31
    • US13151020
    • 2011-06-01
    • Raymond J. Sedwick
    • Raymond J. Sedwick
    • H01F27/42H01F37/00H01F38/00H03B15/00H02J17/00
    • H03B15/003H02J7/025H02J17/00H02J50/12H02J50/50H02J50/70Y10T307/25
    • A wireless energy transfer system includes a primary and one (or more) secondary oscillators for transferring energy therebetween when resonating at the same frequency. The long range (up to and beyond 100 m) efficient (as high as and above 50%) energy transfer is achieved due to minimizing (or eliminating) losses in the system. Superconducting materials are used for all current carrying elements, dielectrics are either avoided altogether, or those are used with a low dissipation factor, and the system is operated at reduced frequencies (below 1 MHz). The oscillators are contoured as a compact flat coil formed from a superconducting wire material. The energy wavelengths exceed the coils diameter by several orders of magnitude. The reduction in radiative losses is enhanced by adding external dielectric-less electrical capacitance to each oscillator coil to reduce the operating frequency. The dielectric strength of the capacitor is increased by applying a magnetic cross-field to the capacitor to impede the electrons motion across an air gap defined between coaxial cylindrical electrodes.
    • 无线能量传递系统包括在相同频率下谐振时,用于在其间传递能量的主振荡器和一个(或更多个)次振荡器。 由于系统中的损耗最小化(或消除),实现了长距离(高达100 m)的高效(高达50%以上)的能量传输。 超导材料用于所有载流元件,电介质完全可以避免,或者以低损耗因子使用,系统以低频(低于1 MHz)工作。 振荡器的轮廓是由超导线材形成的紧凑型扁平线圈。 能量波长超过线圈直径几个数量级。 通过向每个振荡器线圈添加外部无电介质电容来降低工作频率,可以增强辐射损耗的降低。 通过向电容器施加磁交变场来增加电容器的介电强度,以阻止跨同轴圆柱形电极间限定的气隙的电子运动。