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    • 5. 发明专利
    • Wireless power supply system
    • 无线电源系统
    • JP2008283804A
    • 2008-11-20
    • JP2007126564
    • 2007-05-11
    • Kansai Electric Power Co Inc:The関西電力株式会社
    • KIMURA TADATSUYO
    • H02J17/00B25J19/00H02J7/02
    • PROBLEM TO BE SOLVED: To provide a wireless power supply system that allows charging by a wireless system to a mobile body operating in an indoor space.
      SOLUTION: The wireless power supply system S is composed of a mobile body 20, which uses electric energy as an energy source, and a power feeder 10 for transmitting electric energy to the mobile body 20 with a microwave. The power feeder 10 includes a microwave power-source device 11 for converting power into a microwave and a transmitter 12 for transmitting a microwave toward the mobile body 20. The mobile body 20 is provided with a power-receiving antenna 21 for receiving a microwave. The transmitter 12 has a power-transmitting antenna 121 for transmitting a microwave. The power-transmitting antenna 121 is configured so that the orientation direction of microwave transmission is adjusted according to the movement of the mobile body 20.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种无线电源系统,其允许无线系统对在室内操作的移动体进行充电。 解决方案:无线电源系统S由使用电能作为能源的移动体20和用微波将电能传输到移动体20的馈电器10构成。 馈电器10包括用于将功率转换成微波的微波功率源装置11和用于向移动体20发送微波的发射器12.移动体20设置有用于接收微波的电力接收天线21。 发射机12具有发射微波的发射天线121。 发送天线121被配置为使得根据移动体20的移动来调整微波传输的定向方向。(C)2009年,JPO和INPIT
    • 6. 发明专利
    • Connected type water cooler-heater, and its operating method
    • 连接式水冷加热器及其操作方法
    • JP2007183030A
    • 2007-07-19
    • JP2006000724
    • 2006-01-05
    • Ebara Refrigeration Equipment & Systems Co LtdKansai Electric Power Co Inc:The荏原冷熱システム株式会社関西電力株式会社
    • KIMURA TADATSUYOIKEZAKI YASUONAKAZATO YUKIOKUBO KATSUHIROKITAMURA KAZUHIRO
    • F24F11/02F24F5/00
    • PROBLEM TO BE SOLVED: To provide a connected type water cooler-heater, and its operating method reducing an initial cost of a whole of the connected type water cooler-heater, and capable of carrying out highly efficient (COP) operation in response to a load by composing water cooler-heaters of the connected type water cooler-heater by at least one commercial power source driven water cooler-heater, and at least one inverter driven water cooler-heater. SOLUTION: The operating method is for the connected type water cooler-heater provided with the commercial power source driven water cooler-heater 11 connected to a common cold water pipe arrangement 14, a commercial power source driven slave water cooler-heater 12-1, and an inverter driven slave water cooler-heater 12-2. Each water cooler-heater carries out predetermined certain temperature control of each cold water outlet temperature. An optimum operating number is calculated at every interval certain by the number of connected water cooler-heaters, a set temperature difference of a cold water inlet and outlet, and the cold water inlet temperature. By comparison between the optimum operating number and an operating number, the operating number is maintained at the present or varied to operate the water cooler-heaters at the optimum operating number. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种连接式水冷却器及其操作方法,降低整个连接式水冷却器的初始成本,并且能够进行高效(COP)操作 通过由至少一个商用电源驱动的水冷却器加热器组成连接式水冷却器加热器的水冷却器加热器和至少一个逆变器驱动的水冷却器加热器来响应负载。

      解决方案:操作方法适用于连接到普通冷水管道装置14的商用电源驱动水冷却器11的连接式水冷却器,商业电源驱动的从水冷却器加热器12 -1,以及逆变器驱动的从水冷却器加热器12-2。 每个冷却水加热器对每个冷水出口温度进行预定的一定温度控制。 按照连接的水冷却器加热器的数量,冷水入口和出口的设定温差以及冷水入口温度来确定每个间隔的最佳操作数。 通过比较最佳操作数和操作数,操作数保持在现在或变化,以在最佳操作数下操作水冷却器加热器。 版权所有(C)2007,JPO&INPIT