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    • 1. 发明申请
    • WIRELESS POWER TRANSMISSION SYSTEM
    • 无线电力传输系统
    • US20120274149A1
    • 2012-11-01
    • US13453045
    • 2012-04-23
    • Hiroshi KANNOHiroshi YAMAMOTO
    • Hiroshi KANNOHiroshi YAMAMOTO
    • H01F38/14
    • H02J50/12H02J7/025H02J17/00H02J50/20H02J50/80
    • A wireless power transmission system according to the present disclosure includes: a pair of antennas, between which power is transmissible wirelessly by resonant magnetic coupling at a frequency f0, one of which is a series resonant circuit, and the other of which is a parallel resonant circuit; and a control section, which controls a transmission frequency according to the magnitude of the power being transmitted between the antennas. If the power transmitted between the antennas is greater than a reference value P1, the control section sets the transmission frequency to be a value that falls within a first level range that is higher than the frequency f0. But if the power is smaller than the reference value P1, then the control section sets the transmission frequency to be a value that falls within a second level range that is lower than the first level range.
    • 根据本公开的无线电力传输系统包括:一对天线,其间以频率f0的谐振磁耦合无线地传输电力,其中一个是串联谐振电路,另一个是并联谐振 电路 以及控制部,其根据在天线之间传输的功率的大小控制发送频率。 如果在天线之间传输的功率大于参考值P1,则控制部分将发送频率设置为落在高于频率f0的第一电平范围内的值。 但是,如果功率小于参考值P1,则控制部将发送频率设定为落入低于第一电平范围的第二电平范围内的值。
    • 2. 发明申请
    • POWER GENERATING APPARATUS, POWER GENERATING SYSTEM, AND WIRELESS ELECTRIC POWER TRANSMISSION APPARATUS
    • 发电设备,发电系统和无线电力传输装置
    • US20110266882A1
    • 2011-11-03
    • US13098526
    • 2011-05-02
    • Hiroshi YAMAMOTOHiroshi KANNO
    • Hiroshi YAMAMOTOHiroshi KANNO
    • H01F38/14
    • H02J50/12H02J7/025H02J17/00H02J50/10H02J50/80
    • A power generator includes: a power generating section 101 that outputs DC energy; an oscillating section 102 that converts the DC energy into RF energy with a frequency f0; a power-transmitting antenna 107 that transmits the RF energy; a power-receiving antenna 108 that receives at least a part of the RF energy that has been transmitted by the power-transmitting antenna 107; and a transmitting-end control section 110 that matches the input impedance of the oscillating section 102 to the output impedance of the power generating section 101 by changing the input impedance of the oscillating section 102 in accordance with a variation in the output impedance of the power generating section 101. The power-transmitting antenna 107 is a series resonant circuit, and the power-receiving antenna 108 is a parallel resonant circuit. And the resonant frequencies fT and fR of the power-transmitting and power-receiving antennas 107 and 108 are both set to be equal to the frequency f0 of the RF energy.
    • 发电机包括:输出直流能量的发电部101; 振荡部分102,其将DC能量转换成具有频率f0的RF能量; 传送RF能量的发射天线107; 接收由发射天线107发送的RF能量的至少一部分的电力接收天线108; 以及发送端控制部分110,其通过根据功率的输出阻抗的变化改变振荡部分102的输入阻抗,将振荡部分102的输入阻抗与发电部分101的输出阻抗相匹配 发电天线107是串联谐振电路,电力接收天线108是并联谐振电路。 并且功率发射和功率接收天线107和108的谐振频率fT和fR都被设置为等于RF能量的频率f0。
    • 3. 发明申请
    • POWER GENERATION SYSTEM AND POWER GENERATING UNIT
    • 发电系统和发电机组
    • US20120086283A1
    • 2012-04-12
    • US13267090
    • 2011-10-06
    • Hiroshi YAMAMOTOHiroshi KANNO
    • Hiroshi YAMAMOTOHiroshi KANNO
    • H02J17/00
    • H02J50/12H02J7/025H02J17/00H02J50/40
    • The power generation system includes first and second power generating units, each of which converts DC energy into RF energy and transmits the power wirelessly, a combining section, which combines the respective outputs of the power generating units together, and an oscillation phase control section, which reduces the phase difference between the RF energies supplied from the two power generating units and. The oscillation phase control section controls a phase difference between the RF energies supplied from the oscillators and belonging to the first and second power generating units and, respectively, so that first and second RF energies supplied from the first and second power generating units and are in phase with each other when combined together by the combining section.
    • 发电系统包括第一和第二发电单元,每个发电单元将DC能量转换成RF能量并且将无线发射功率,将发电机组的各个输出组合在一起的组合部分和振荡相位控制部分, 这降低了从两个发电单元提供的RF能量之间的相位差。 振荡相位控制部分控制从振荡器提供并属于第一和第二发电单元的RF能量之间的相位差,并且分别使得从第一和第二发电单元提供的第一和第二RF能量处于 通过组合部分组合在一起时彼此相位。
    • 5. 发明申请
    • WIRELESS POWER TRANSMISSION SYSTEM
    • 无线电力传输系统
    • US20110248573A1
    • 2011-10-13
    • US13081083
    • 2011-04-06
    • Hiroshi KANNOHiroshi YAMAMOTO
    • Hiroshi KANNOHiroshi YAMAMOTO
    • H01F27/42
    • H02J50/12H01F27/2823H01F38/14
    • A wireless power transmission system is designed to transmit power between a power-transmitting resonator 105 and a power-receiving resonator 107, which are implemented as inductors LL and Ls of mutually different sizes, by a non-contact method over a resonant magnetic field with a resonant frequency f0. When measured at the resonant frequency f0, the resistance value Rs per unit length of at least a part of wiring that forms the smaller inductor Ls is lower than that (RL) of wiring that forms the other larger inductor LL. In this manner, high transmission efficiency can be maintained between those power-transmitting and power-receiving resonators without increasing the overall length of wiring used wastefully.
    • 无线电力传输系统被设计成在功率发射谐振器105和功率接收谐振器107之间传输功率,功率发射谐振器105和功率接收谐振器107之间通过非接触方式通过谐振磁场与谐振磁场相互不同的尺寸实现电感器LL和Ls, 谐振频率f0。 当以共振频率f0测量时,形成较小电感器Ls的布线的至少一部分的每单位长度的电阻值Rs低于形成另一较大电感器LL的布线(RL)。 以这种方式,可以在这些功率发射和功率受电谐振器之间保持高的传输效率,而不会浪费地增加布线的总长度。
    • 8. 发明申请
    • WIRELESS POWER TRANSMISSION SYSTEM
    • 无线电力传输系统
    • US20120001497A1
    • 2012-01-05
    • US13170355
    • 2011-06-28
    • Tomokazu SADAHiroshi KANNO
    • Tomokazu SADAHiroshi KANNO
    • H02J17/00
    • H02J50/50H02J5/005H02J7/025H02J50/12Y10T307/707Y10T307/729Y10T307/944
    • A wireless power transmission unit according to the present invention transmits power wirelessly from a power transmitting section 100 to a power receiving section 200 through a resonant magnetic field. The unit includes: the power transmitting section 100, which resonates at a resonant frequency f0; at least one relay section 300, which can resonate at a frequency that is selected from multiple frequencies including the resonant frequency f0; and a resonance control section 600 that outputs information that specifies a resonance condition to be imposed on the relay section 300 according to the arrangement of the power receiving section 200 and that makes the relay section 300 resonate on the resonance condition that has been specified in accordance with that information.
    • 根据本发明的无线电力传输单元通过谐振磁场从电力发送部分100无线地发送到电力接收部分200。 该单元包括:以共振频率f0谐振的功率发送部分100; 至少一个中继部分300,其可以以从包括谐振频率f0的多个频率中选择的频率谐振; 以及谐振控制部600,其根据电力接收部200的配置输出规定要施加在中继部300上的谐振条件的信息,并使继电器部300根据已经规定的谐振条件进行谐振 与该信息。