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    • 2. 发明授权
    • Apparatus and method for predicting solar irradiance variation
    • 用于预测太阳辐照度变化的装置和方法
    • US08923567B2
    • 2014-12-30
    • US13329450
    • 2011-12-19
    • Yi YaoPeter TuMing-Ching ChangLi GuanYan Tong
    • Yi YaoPeter TuMing-Ching ChangLi GuanYan Tong
    • G06K9/00
    • G01W1/10F24S50/00F24S2201/00H01L31/02021Y02E10/40Y02E10/50
    • An apparatus and method, as may be used for predicting solar irradiance variation, are provided. The apparatus may include a solar irradiance predictor processor (10) configured to process a sequence of images (e.g., sky images). The irradiance predictor processor may include a cloud classifier module (18) configured to classify respective pixels of an image of a cloud to indicate a solar irradiance-passing characteristic of at least a portion of the cloud. A cloud motion predictor (22) may be configured to predict motion of the cloud over a time horizon. An event predictor (24) may be configured to predict over the time horizon occurrence of a solar obscuration event. The prediction of the solar obscuration event may be based on the predicted motion of the cloud. The event predictor may include an irradiance variation prediction for the obscuration event based on the solar irradiance-passing characteristic of the cloud.
    • 提供了可用于预测太阳辐照度变化的装置和方法。 该装置可以包括被配置为处理图像序列(例如,天空图像)的太阳辐照度预测器处理器(10)。 辐照度预测器处理器可以包括云分类器模块(18),其被配置为对云的图像的各个像素进行分类,以指示云的至少一部分的太阳辐射通过特性。 云运动预测器(22)可以被配置为预测云在时间范围内的运动。 事件预测器(24)可以被配置为在太阳遮挡事件的时间范围内发生预测。 太阳遮蔽事件的预测可以基于云的预测运动。 事件预测器可以包括基于云的太阳辐射通过特性的遮蔽事件的辐照度变化预测。
    • 5. 发明申请
    • Sign structure for a personal computer
    • 个人电脑的标志结构
    • US20070279893A1
    • 2007-12-06
    • US11802286
    • 2007-05-22
    • Sung-Yi YaoYen-Po Yu
    • Sung-Yi YaoYen-Po Yu
    • F21V9/16
    • G09F13/04G06F1/182
    • A sign structure for a personal computer includes a casing panel, an illuminating panel, and a sign panel. The casing panel has a least one slot opening. The illuminating panel, mounted adjacent to an exterior surface of the casing panel has at least one through opening corresponding to the slot opening, and at least one power supply connector. The sign panel mounted adjacent to an exterior side of the illuminating panel has at least one through hole corresponding to the through opening. Besides, at least part of the sign panel is transparent. Therefore, the illuminating panel of the sign structure for a personal computer of the invention can illuminate when the power is transmitted through the power supply connector to it, in order to differentiate the I/O connectors of the personal computer in low light conditions.
    • 个人计算机的标志结构包括壳体面板,照明面板和标志面板。 壳体板具有至少一个槽口。 安装在壳体面板的外表面附近的照明面板具有至少一个对应于槽口的通孔和至少一个电源连接器。 靠近照明面板的外侧安装的标志面板具有至少一个对应于通孔的通孔。 此外,符号面板的至少一部分是透明的。 因此,为了在低光条件下区分个人计算机的I / O连接器,本发明的个人计算机的符号结构的照明面板能够在通过电源连接器传输电力时照亮它。
    • 7. 发明申请
    • METHOD FOR REMINDING OF ENTERING TARGET ROUTE
    • 提供入场目标路线的方法
    • US20070061073A1
    • 2007-03-15
    • US11164821
    • 2005-12-07
    • Ming-Jen KuoKo-Yi Yao
    • Ming-Jen KuoKo-Yi Yao
    • G01C21/00
    • G01C21/3655G01C21/3629
    • A method for reminding of entering a target route is disclosed. First, the method provides a Point of Interest (POI) at a conjunction of the present route and the target route and sets the POI as a basic voice reminding point. Next, the method determines whether the actual distance between the present position and the basic voice reminding point is less than or equal to the voice reminding distance. Then, when the actual distance between the present position and the basic voice reminding point is less than or equal to the voice reminding distance, a voice reminding message is sent out as the reminding of entering the target route correctly.
    • 公开了一种提醒进入目标路线的方法。 首先,该方法在当前路由和目标路由的结合处提供兴趣点(POI),并将POI设置为基本语音提醒点。 接下来,该方法确定当前位置和基本语音提醒点之间的实际距离是否小于或等于语音提醒距离。 然后,当当前位置和基本语音提醒点之间的实际距离小于或等于语音提醒距离时,作为提示正确进入目标路线的语音提醒消息被发送出去。
    • 8. 发明授权
    • Ionization chamber having off-passageway measuring electrodes
    • 电离室具有离开通道的测量电极
    • US5672878A
    • 1997-09-30
    • US740084
    • 1996-10-24
    • Jonathan Yi Yao
    • Jonathan Yi Yao
    • G01T1/185H01J47/02
    • G01T1/185H01J47/02
    • An ionization chamber for monitoring a radiation beam includes a housing having a primary beam passageway and a number of secondary beam cells that are adjacent to the primary beam passageway. The primary beam passageway passes entirely through the housing. In the preferred embodiment, a large-area beam measuring electrode and an array of small-area beam measuring electrodes are each coaxial with the primary beam passageway. Also, in the preferred embodiment, each secondary beam cell includes a beam measuring electrode. Because the portions of the radiation beam that enter the secondary beam cells do not pass through the ionization chamber, these portions do not contaminate the treatment beam, allowing the beam measuring electrodes within the cells to be dimensioned and configured so as to maximize signal strength.
    • 用于监测辐射束的电离室包括具有主光束通道和与主光束通道相邻的多个次级光束单元的壳体。 主梁通道完全通过壳体。 在优选实施例中,大面积光束测量电极和小面积光束测量电极阵列各自与主光束通道同轴。 此外,在优选实施例中,每个次级光束单元包括光束测量电极。 由于进入次级光束单元的辐射束的部分不通过电离室,所以这些部分不会污染处理光束,从而允许单元内的光束测量电极的尺寸和构造以使信号强度最大化。