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    • 103. 发明授权
    • Window-glass antenna for vehicle
    • 车窗玻璃天线
    • US09350071B2
    • 2016-05-24
    • US13810146
    • 2011-05-16
    • Hisashi KobayashiKanya Hirabayashi
    • Hisashi KobayashiKanya Hirabayashi
    • H01Q1/32H01Q1/12
    • H01Q1/1271H01Q1/325H01Q1/3291
    • Disclosed is a window-glass antenna for a vehicle in which a conductive film is formed on the vehicle window glass, the antenna being provided in a film-removed portion formed between an opening edge of flange and an end edge of the conductive film. The antenna includes a first feeding point provided on the film-removed portion and close to the end edge of the conductive film, a second feeding point provided on the flange and at a location near the first feeding point, and a first substantially-U-shaped element connected with the first feeding point. The first substantially-U-shaped element is provided in a manner that a conductive-film-side line is arranged adjacent to the end edge of the conductive film, a tip of the conductive-film-side line is connected with a substantially-orthogonal line, and another tip of the substantially-orthogonal line is connected with a flange-side line arranged adjacent to the flange opening edge.
    • 公开了一种车辆用窗玻璃天线,其中在车窗玻璃上形成导电膜,天线设置在形成在凸缘的开口边缘和导电膜的端缘之间的膜去除部分中。 天线包括设置在膜去除部分上且靠近导电膜的端部边缘的第一馈电点,设置在凸缘上并位于靠近第一馈电点的位置的第二馈电点,以及第一基本上U- 与第一供电点连接的圆形元件。 第一大致U形元件以导电膜侧线与导电膜的端缘相邻的方式设置,导电膜侧线的末端与基本上正交的 并且基本上正交的线的另一个尖端与邻近凸缘开口边缘布置的凸缘侧线连接。
    • 105. 发明授权
    • Device and method for humidity estimation
    • 湿度估算装置及方法
    • US08615327B2
    • 2013-12-24
    • US12903640
    • 2010-10-13
    • Yasuo TakagiKoichi IkedaYukio HiraokaHisashi KobayashiAkihiro Fujii
    • Yasuo TakagiKoichi IkedaYukio HiraokaHisashi KobayashiAkihiro Fujii
    • G01M1/38G05B13/00G05B15/00F25B41/06F25B1/00F25B49/00G01K13/00
    • F24F11/30F24F2110/20
    • A humidity estimation device connected with an air-conditioner includes a charge airflow rate estimation (CARE) unit, a charge air absolute humidity estimation (CAAHE) unit, an indoor generated vapor amount estimation (IGVAE) unit, and an indoor absolute humidity estimation (IAHE) unit. The CARE unit calculates an estimated charge airflow rate (ECAR) of the air-conditioner based on operation control information of the charge fan and a preset fan differential pressure. The CAAHE unit calculates an estimated charge air absolute humidity (ECAAH) of the air-conditioner based on a charge air temperature and a preset charge air relative humidity. The IGVAE unit calculates an estimated indoor generated vapor amount (EIGVA) based on an indoor temperature, the number of persons in the room and activity index values of the persons. The IAHE unit calculates an estimated absolute humidity in the room based on the ECAR, the ECAAH and the EIGVA.
    • 与空调机连接的湿度估计装置包括充气流量估计(CARE)单元,增压空气绝对湿度估计(CAAHE)单元,室内产生蒸气量估计单元和室内绝对湿度估计( IAHE)单位。 CARE单元基于充电风扇的操作控制信息和预设的风扇差压来计算空调的估计的充气流量(ECAR)。 CAAHE单元基于增压空气温度和预设的充气空气相对湿度来计算空调器的估计的增压空气绝对湿度(ECAAH)。 IGVAE单元基于室内温度,房间中的人数和人的活动指标值来计算估计的室内产生蒸气量(EIGVA)。 IAHE单位根据ECAR,ECAAH和EIGVA计算房间的绝对湿度估计值。