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    • 2. 发明申请
    • POWER TRANSMITTING APPARATUS, POWER RECEIVING APPARATUS, AND POWER TRANSMISSION SYSTEM
    • 电力传输装置,电力接收装置和电力传输系统
    • US20120025628A1
    • 2012-02-02
    • US13192263
    • 2011-07-27
    • Keiichi ICHIKAWAShinji GOMAKazuya KATO
    • Keiichi ICHIKAWAShinji GOMAKazuya KATO
    • H01F38/14
    • H02J7/02H02J5/00H02J7/0044H02J7/025
    • A power transmitting apparatus has a power transmitting apparatus side active electrode provided within the casing thereof along a seat. A power transmitting apparatus side passive electrode is exposed on a backrest. A power receiving apparatus has a power receiving apparatus side active electrode formed along the bottom surface thereof. A power receiving apparatus side passive electrode is formed on the outer surface of the casing of the power receiving apparatus. By mounting the power receiving apparatus on a mounting portion of the power transmitting apparatus, the power receiving apparatus side active electrode faces the power transmitting apparatus side active electrode with a dielectric layer therebetween, and the power receiving apparatus side passive electrode is directly electrically connected to the power transmitting apparatus side passive electrode.
    • 动力传递装置具有沿着座椅设置在其壳体内的动力传递装置侧的有效电极。 动力传递装置侧被动电极暴露在靠背上。 电力接收装置具有沿其底面形成的受电装置侧的有效电极。 受电装置侧无源电极形成在电力接收装置的外壳的外表面上。 通过将电力接收装置安装在动力传递装置的安装部上,受电装置侧的有效电极面对动力传递装置侧的有源电极,其间具有介电层,受电装置侧的被动电极直接电连接到 电力传输装置侧无源电极。
    • 3. 发明申请
    • POWER TRANSMISSION SYSTEM
    • 电力传输系统
    • US20120038218A1
    • 2012-02-16
    • US13207015
    • 2011-08-10
    • Keiichi ICHIKAWA
    • Keiichi ICHIKAWA
    • H02J17/00
    • H02J50/12H02J5/005H02J7/025H02J50/70
    • A power transmission system a power transmission apparatus, a center frequency acquiring unit, and a control unit. The power transmission apparatus includes a primary-side coupling electrode electrically configured to couple to a secondary-side coupling electrode and connected load circuit of a power receiving apparatus, a high-frequency voltage generating circuit configured to generate and apply a high-frequency voltage to the primary-side coupling electrode, and a driving power circuit that supplies driving power to the high-frequency voltage generating circuit. The center frequency acquiring unit acquires a center frequency at which a high-frequency high voltage applied to coupling electrode is minimized in a state in which a low load is applied to the secondary-side coupling electrode of the power receiving apparatus and the frequency of the generated high-frequency voltage is varied. The control unit sets a driving frequency of the high-frequency voltage generating circuit at or near the center frequency to supply power to the power receiving apparatus.
    • 电力传输系统,电力传输装置,中心频率获取单元和控制单元。 电力传输装置包括电气配置为耦合到次级侧耦合电极和受电装置的连接负载电路的初级侧耦合电极,被配置为产生并施加高频电压的高频电压发生电路 初级侧耦合电极和向高频电压产生电路提供驱动电力的驱动电源电路。 中心频率获取单元获取在向受电装置的次级侧耦合电极施加低负载的状态下,施加到耦合电极的高频高电压最小化的中心频率,以及 产生的高频电压变化。 控制单元将高频电压发生电路的驱动频率设置在中心频率处或接近中心频率以向电力接收装置供电。
    • 5. 发明申请
    • METHOD AND SYSTEM FOR DISTRIBUTING DISASTER INFORMATION
    • 分配灾害信息的方法和系统
    • US20120158418A1
    • 2012-06-21
    • US13405423
    • 2012-02-27
    • Keiichi ICHIKAWAYukio OHTSUKI
    • Keiichi ICHIKAWAYukio OHTSUKI
    • G06Q99/00
    • G06Q30/02G06Q50/265
    • A system and method to distribute disaster information to a customer. An information distribution apparatus for distributing disaster information to a customer terminal includes a disaster information storage for storing disaster-occurred district information for identifying a disaster-occurred district in which a disaster has occurred and a real disaster level corresponding to the disaster selected from a plurality of preset disaster levels; a customer information registration unit for registering customer district information; a distribution information management unit for deciding whether the disaster information is distributed to the customer by collating the disaster-occurred district with the customer district with respect to the disaster level; and an information distribution unit for distributing disaster information to the terminal according to a decision of the distribution information management unit.
    • 将灾害信息分发给客户的系统和方法。 用于向客户终端分发灾害信息的信息分配装置包括灾害信息存储器,用于存储用于识别发生灾害的灾害区域的灾害区信息和与从多个地点中选择的灾难相对应的真实灾难等级 预设灾害水平; 用于登记客户区信息的客户信息登记单元; 分发信息管理单元,用于通过将灾区与客户区相对于灾难水平进行整理来判定灾害信息是否分发给客户; 以及信息分发单元,用于根据分发信息管理单元的决定将灾难信息分发给终端。
    • 6. 发明申请
    • POWER TRANSMITTING APPARATUS AND POWER TRANSMISSION SYSTEM
    • 电力传输装置和电力传输系统
    • US20120049640A1
    • 2012-03-01
    • US13213955
    • 2011-08-19
    • Keiichi ICHIKAWAHironori SAKAI
    • Keiichi ICHIKAWAHironori SAKAI
    • H02J3/10
    • H02J7/025H02J5/005H02J50/12Y10T307/658
    • This disclosure provides a power transmitting apparatus including coupling electrodes couplable to a power receiving apparatus to transmit power to the receiving apparatus. A high-frequency voltage generator circuit is adapted to supply a high-frequency voltage across the coupling electrodes in accordance with a signal output from a control circuit. A driving power supply switching circuit switches between applying a constant voltage and supplying a constant current to the high-frequency voltage generator circuit. First, by sweeping the driving frequency of the high-frequency voltage generator circuit in a state in which a constant current is supplied, it is determined whether there is a maximal value in the frequency characteristics of a voltage applied to the high-frequency voltage generator circuit. When there is a maximal value, the corresponding frequency is set as the driving frequency, and power transmission is started after the driving power supply switching circuit is switched to a constant voltage.
    • 本公开提供了一种电力传输装置,其包括可耦合到电力接收装置的耦合电极以向接收装置发送电力。 高频电压发生器电路适于根据从控制电路输出的信号在耦合电极两端提供高频电压。 驱动电源开关电路在施加恒定电压并向高频电压发生器电路提供恒定电流之间切换。 首先,通过在提供恒定电流的状态下扫描高频电压发生器电路的驱动频率,确定在施加到高频电压发生器的电压的频率特性中是否存在最大值 电路。 当存在最大值时,将相应的频率设置为驱动频率,并且在将驱动电源切换电路切换到恒定电压之后开始电力传输。