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    • 1. 发明授权
    • Interactive system capable of improving image processing
    • 能够改善图像处理的交互式系统
    • US09024880B2
    • 2015-05-05
    • US12775467
    • 2010-05-06
    • Hsin-Chia ChenChih-Hung LuCho-Yi LinTzu-Yi Chao
    • Hsin-Chia ChenChih-Hung LuCho-Yi LinTzu-Yi Chao
    • G06T7/40G06T7/00G06T7/60
    • G06T7/408G06T7/11G06T7/62G06T7/70G06T7/90G06T2207/10016
    • An interactive system capable of improving image processing includes a reference device, a processing module and a controller. The reference device is used for transmitting and/or reflecting light signals within a predetermined spectrum. The processing module includes an image sensor, an estimation unit and a transmission interface. The image sensor is used for sensing an image so as to generate pixel signals; the estimation unit is used for determining static parameters of at least one image object according to the pixel signals; and the transmission interface is used for serially outputting the static parameters of the at least one image object. The controller is used for controlling operation of the interactive system according to the static parameters of the at least one image object outputted from the transmission interface. The image sensor, the estimation unit, and the transmission interface can all be formed on the same substrate.
    • 能够改善图像处理的交互式系统包括参考装置,处理模块和控制器。 参考装置用于在预定频谱内传输和/或反射光信号。 处理模块包括图像传感器,估计单元和传输接口。 图像传感器用于感测图像以产生像素信号; 估计单元用于根据像素信号确定至少一个图像对象的静态参数; 并且传输接口用于串行输出至少一个图像对象的静态参数。 控制器用于根据从传输接口输出的至少一个图像对象的静态参数来控制交互式系统的操作。 图像传感器,估计单元和传输界面都可以在同一基板上形成。
    • 2. 发明申请
    • INTERACTIVE SYSTEM CAPABLE OF IMPROVING IMAGE PROCESSING
    • 可以改进图像处理的交互系统
    • US20100220210A1
    • 2010-09-02
    • US12775467
    • 2010-05-06
    • Hsin-Chia ChenChih-Hung LuCho-Yi LinTzu-Yi Chao
    • Hsin-Chia ChenChih-Hung LuCho-Yi LinTzu-Yi Chao
    • H04N5/228
    • G06T7/408G06T7/11G06T7/62G06T7/70G06T7/90G06T2207/10016
    • An interactive system capable of improving image processing includes a reference device, a processing module and a controller. The reference device is used for transmitting and/or reflecting light signals within a predetermined spectrum. The processing module includes an image sensor, an estimation unit and a transmission interface. The image sensor is used for sensing an image so as to generate pixel signals; the estimation unit is used for determining static parameters of at least one image object according to the pixel signals; and the transmission interface is used for serially outputting the static parameters of the at least one image object. The controller is used for controlling operation of the interactive system according to the static parameters of the at least one image object outputted from the transmission interface. The image sensor, the estimation unit, and the transmission interface can all be formed on the same substrate.
    • 能够改善图像处理的交互式系统包括参考装置,处理模块和控制器。 参考装置用于在预定频谱内传输和/或反射光信号。 处理模块包括图像传感器,估计单元和传输接口。 图像传感器用于感测图像以产生像素信号; 估计单元用于根据像素信号确定至少一个图像对象的静态参数; 并且传输接口用于串行输出至少一个图像对象的静态参数。 控制器用于根据从传输接口输出的至少一个图像对象的静态参数来控制交互式系统的操作。 图像传感器,估计单元和传输界面都可以在同一基板上形成。
    • 8. 发明授权
    • Sensing system and method for obtaining position of pointer thereof
    • 用于获得其指针位置的感测系统和方法
    • US08269158B2
    • 2012-09-18
    • US12557451
    • 2009-09-10
    • Hsin-Chia ChenTzung-Min SuChih-Hung LuCho-Yi Lin
    • Hsin-Chia ChenTzung-Min SuChih-Hung LuCho-Yi Lin
    • G06F15/00
    • G06F3/0428
    • In a sensing system and a method for obtaining a position of a pointer, the sensing system includes a sensing area, a reflective mirror, an image sensor and a processing circuit. The reflective mirror is configured for generating a mirror image of a pointer when the pointer approaches the sensing area. The image sensor is configured for sensing the pointer and the mirror image thereof when the pointer approaches the sensing area. When the pointer approaches the sensing area, the processing circuit calculates a coordinate value of the pointer according to an image sensed by the image sensor and a predetermined size of the pointer. The pointer forms an imaginary orthographic projection in the sensing area, the processing circuit regards the imaginary orthographic projection as a round projection, and a radius of the round projection is the predetermined size.
    • 在感测系统和用于获得指针位置的方法中,感测系统包括感测区域,反射镜,图像传感器和处理电路。 反射镜被配置为当指示器接近感测区域时产生指针的镜像。 图像传感器被配置为当指示器接近感测区域时感测指示器及其镜像。 当指针接近感测区域时,处理电路根据由图像传感器感测的图像和指针的预定大小来计算指针的坐标值。 指针在感测区域中形成虚构的正投影,处理电路将假想正投影视为圆投影,圆投影的半径为预定尺寸。
    • 9. 发明授权
    • Variable size sensing system and method for redefining size of sensing area thereof
    • 可变尺寸感测系统和方法,用于重新定义其感测区域的尺寸
    • US08976159B2
    • 2015-03-10
    • US12479836
    • 2009-06-07
    • Cho-Yi LinHsin-Chi ChengChih-Hung LuYi-Hsien Ko
    • Cho-Yi LinHsin-Chi ChengChih-Hung LuYi-Hsien Ko
    • G06F3/041G06F3/042
    • G06F3/0421
    • In a variable size sensing system and a method for redefining the size of a sensing area thereof, the sensing system includes four elements, a mark and two image sensing devices. The four elements are consecutively connected and thereby forming a frame. Two of the four elements have variable lengths so as to adjust the size of the frame. The inner edge of the frame defines a sensing area of a parallelogram shape. The sensing system has a first and a second working mode. The sensing area has a first size and a second size when the sensing system is in the first working mode and the second working mode respectively, wherein the first size is predetermined and smaller than the second size. The mark is used to mark a fixed length. When the sensing system is changed from the first working mode to the second working mode, the mark sensed by the image sensing devices can be utilized to redefine the size of the sensing area in the sensing system.
    • 在可变尺寸感测系统和用于重新定义其感测区域的尺寸的方法中,感测系统包括四个元件,标记和两个图像感测装置。 四个元件连续地连接,从而形成一个框架。 四个元件中的两个具有可变长度,以便调整框架的尺寸。 框架的内边缘限定了平行四边形形状的感测区域。 感测系统具有第一和第二工作模式。 当感测系统分别处于第一工作模式和第二工作模式时,感测区域具有第一尺寸和第二尺寸,其中第一尺寸预定并小于第二尺寸。 标记用于标记固定长度。 当感测系统从第一工作模式改变到第二工作模式时,由感光装置感测的标记可以用于重新定义传感系统中感测区域的尺寸。