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    • 3. 发明授权
    • Global coordinate creation method for precision measurement of hollow frame
    • 中空框架精密测量全局坐标创建方法
    • US07893874B2
    • 2011-02-22
    • US12442331
    • 2007-09-21
    • Seong-Youb ChungSung-Han KimSe-Hwan SongYoung-Jun ParkJae-Hoon Kim
    • Seong-Youb ChungSung-Han KimSe-Hwan SongYoung-Jun ParkJae-Hoon Kim
    • G01S3/02
    • G01S19/11G01C15/00
    • A method of creating a global coordinate of a polyhedral hollow frame includes a first step of providing a plurality of transmitters on a reference surface in the hollow frame, providing a plurality of reference sensors to create the coordinate of the reference surface, and creating a local coordinate frame of the reference surface on the basis of the positional coordinates measured by the reference sensors; a second step of providing reference sensors at common points of a first vertical surface neighboring to the reference surface to measure and store the coordinates of the common points; a third step of providing a plurality of transmitters and reference sensors on the first vertical surface neighboring to the reference surface to create a local coordinate frame of the first vertical surface; a fourth step of transforming the local coordinate frames created at the first and the third steps into a global coordinate frame using the coordinates of the common points measured at the second step; a fifth step of repeatedly performing the second step to the fourth step on remaining vertical surfaces of the polyhedral hollow frame to transform the respective local coordinate frames into a unified global coordinate frame; a sixth step of providing transmitters on an upper surface neighboring to each vertical surface to obtain the relationship between the global coordinate frame and a local coordinate frame of the upper surface using the coordinates of the common point; and a seventh step of creating and applying a global coordinate frame using the relationship obtained at the sixth step.
    • 创建多面体中空框架的全局坐标的方法包括:第一步骤,在中空框架的参考表面上提供多个发射器,提供多个参考传感器以产生参考表面的坐标,以及创建局部 基于由参考传感器测量的位置坐标,参考表面的坐标系; 在与参考表面相邻的第一垂直表面的公共点处提供参考传感器以测量和存储公共点的坐标的第二步骤; 第三步骤,在与参考表面相邻的第一垂直表面上设置多个发射器和参考传感器,以产生第一垂直表面的局部坐标系; 使用在第二步骤测量的公共点的坐标将在第一和第三步骤中创建的局部坐标系变换为全局坐标系的第四步骤; 在所述多面体中空框架的剩余垂直表面上反复进行第二步骤至第四步骤的第五步骤,以将各个局部坐标系变换为统一的全局坐标系; 在与每个垂直表面相邻的上表面上提供发射器以使用公共点的坐标获得全局坐标系和上表面的局部坐标系之间的关系的第六步骤; 以及使用在第六步骤中获得的关系创建和应用全局坐标系的第七步骤。
    • 4. 发明申请
    • GLOBAL COORDINATE CREATION METHOD FOR PRECISION MEASUREMENT OF HOLLOW FRAME
    • 用于中空框架精密测量的全局坐标创建方法
    • US20090273512A1
    • 2009-11-05
    • US12442331
    • 2007-09-21
    • Seong-Youb ChungSung-Han KimSe-Hwan SongYoung-Jun ParkJae-Hoon Kim
    • Seong-Youb ChungSung-Han KimSe-Hwan SongYoung-Jun ParkJae-Hoon Kim
    • G01S5/14
    • G01S19/11G01C15/00
    • A method of creating a global coordinate of a polyhedral hollow frame includes a first step of providing a plurality of transmitters on a reference surface in the hollow frame, providing a plurality of reference sensors to create the coordinate of the reference surface, and creating a local coordinate frame of the reference surface on the basis of the positional coordinates measured by the reference sensors; a second step of providing reference sensors at common points of a first vertical surface neighboring to the reference surface to measure and store the coordinates of the common points; a third step of providing a plurality of transmitters and reference sensors on the first vertical surface neighboring to the reference surface to create a local coordinate frame of the first vertical surface; a fourth step of transforming the local coordinate frames created at the first and the third steps into a global coordinate frame using the coordinates of the common points measured at the second step; a fifth step of repeatedly performing the second step to the fourth step on remaining vertical surfaces of the polyhedral hollow frame to transform the respective local coordinate frames into a unified global coordinate frame; a sixth step of providing transmitters on an upper surface neighboring to each vertical surface to obtain the relationship between the global coordinate frame and a local coordinate frame of the upper surface using the coordinates of the common point; and a seventh step of creating and applying a global coordinate frame using the relationship obtained at the sixth step.
    • 创建多面体中空框架的全局坐标的方法包括:第一步骤,在中空框架的参考表面上提供多个发射器,提供多个参考传感器以产生参考表面的坐标,以及创建局部 基于由参考传感器测量的位置坐标,参考表面的坐标系; 在与参考表面相邻的第一垂直表面的公共点处提供参考传感器以测量和存储公共点的坐标的第二步骤; 第三步骤,在与参考表面相邻的第一垂直表面上设置多个发射器和参考传感器,以产生第一垂直表面的局部坐标系; 使用在第二步骤测量的公共点的坐标将在第一和第三步骤中创建的局部坐标系变换为全局坐标系的第四步骤; 在所述多面体中空框架的剩余垂直表面上反复进行第二步骤至第四步骤的第五步骤,以将各个局部坐标系变换为统一的全局坐标系; 在与每个垂直表面相邻的上表面上提供发射器以使用公共点的坐标获得全局坐标系和上表面的局部坐标系之间的关系的第六步骤; 以及使用在第六步骤中获得的关系创建和应用全局坐标系的第七步骤。
    • 6. 发明授权
    • Camera module for optical touchscreen
    • 光学触摸屏相机模块
    • US09367175B2
    • 2016-06-14
    • US13972012
    • 2013-08-21
    • MOS Co., Ltd.Sung-Han Kim
    • Sung-Han Kim
    • G06F3/042
    • G06F3/0425G06F3/0421G06F3/0428G06F2203/04103
    • A camera module for an optical touchscreen includes a body part and a light emitting device coupling part. The body part may be disposed on one side corner of a touch region, provided with a light receiving hole at a portion thereof facing a center of the touch region, and provided with a lens mounted to correspond to the light receiving hole and an image sensor disposed to receive light collected through the lens. The light emitting device coupling part may be formed on at least one side of the body part that faces each edge of the touch region, and configured to be coupled to a light emitting device.
    • 用于光学触摸屏的相机模块包括主体部分和发光装置联接部分。 主体部分可以设置在触摸区域的一个侧角上,在其面向触摸区域的中心的部分处设置有光接收孔,并且设置有安装成对应于光接收孔的透镜和图像传感器 设置为接收通过透镜收集的光。 发光器件耦合部分可以形成在主体部分的面对触摸区域的每个边缘的至少一侧上,并且被配置为耦合到发光器件。
    • 8. 发明申请
    • Fuel cell power generation system, method of controlling hydrogen generating quantity and recorded medium recorded program performing the same
    • 燃料电池发电系统,控制氢发生量的方法和执行该氢发生量的记录介质记录程序
    • US20110104579A1
    • 2011-05-05
    • US12929233
    • 2011-01-10
    • Jae-Hyoung GilJae-Hyuk JangArunabha KunduSung-Han KimKyoungsoo Chae
    • Jae-Hyoung GilJae-Hyuk JangArunabha KunduSung-Han KimKyoungsoo Chae
    • H01M8/04H01M8/06
    • H01M8/186H01M8/0612Y02E60/324Y02E60/366Y02E60/528
    • A fuel cell power generation system including: a hydrogen generating apparatus, controlling an amount of hydrogen generation by controlling an on/off status of a switch connected between electrodes; and a fuel cell, being supplied with hydrogen generated by the hydrogen generating apparatus and producing a direct current by converting chemical energy of the hydrogen to electrical energy. The hydrogen generating apparatus used in the system preferably includes an electrolyzer, filled with an aqueous electrolyte solution containing hydrogen ions; a first electrode, accommodated in the electrolyzer, submerged in the aqueous electrolyte solution, and generating electrons; a second electrode, accommodated in the electrolyzer, submerged in the aqueous electrolyte solution, receiving the electrons to generate hydrogen; a switch, located between the first electrode and the second electrode; a meter, measuring an amount of hydrogen generation or an output of a fuel cell; and a switch controller, receiving a set value, comparing the amount of hydrogen generation or the output of the fuel cell measured by the meter with the set value, and controlling an on/off status of the switch.
    • 一种燃料电池发电系统,包括:氢生成装置,通过控制连接在电极之间的开关的接通/断开状态来控制氢的产生量; 以及燃料电池,供给由氢生成装置产生的氢气,并通过将氢的化学能转化为电能产生直流电。 在该系统中使用的氢发生装置优选包括填充有含有氢离子的水性电解液的电解槽, 容纳在电解器中的第一电极浸没在电解质水溶液中并产生电子; 容纳在电解槽中的第二电极浸没在电解质水溶液中,接收电子以产生氢; 位于所述第一电极和所述第二电极之间的开关; 测量氢气产生量或燃料电池的输出的仪表; 以及开关控制器,接收设定值,将由所述仪表测量的氢气产生量或所述燃料电池的输出与所述设定值进行比较,以及控制所述开关的接通/断开状态。
    • 10. 发明授权
    • Camera module for an optical touch screen
    • 用于光学触摸屏的相机模块
    • US09154680B2
    • 2015-10-06
    • US13520840
    • 2011-01-05
    • Sung-Han Kim
    • Sung-Han Kim
    • G06F3/042H04N5/225
    • H04N5/2257G06F3/0425G06F3/0426G06F3/0428H04N5/2251H04N5/2254
    • The present invention relates to a camera module which senses the position of an on object touching a touch surface of an optical touch screen. The camera module comprises one or more lenses, an optical path converting unit, and an image sensor. Each of the lenses is arranged such that the angle of view for the direction vertical to the touch surface is smaller than the angle of view in the direction horizontal to the touch surface. The optical path converting unit reflects light converging through the lenses in the direction vertical to the touch screen. The image sensor is arranged behind the lenses and in the direction horizontal to the touch surface so as to receive the light reflected by the optical path converting unit.
    • 本发明涉及一种摄像机模块,其检测接触光触摸屏的触摸表面的物体的位置。 相机模块包括一个或多个透镜,光路转换单元和图像传感器。 每个透镜被布置成使得垂直于触摸表面的方向的视角小于在与触摸表面水平的方向上的视角。 光路转换单元沿垂直于触摸屏的方向反射会聚在透镜上的光。 图像传感器布置在透镜后面并且在与触摸表面水平的方向上,以便接收由光路转换单元反射的光。