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    • 1. 发明授权
    • Recognition system and recognition method
    • 识别系统和识别方法
    • US08810362B2
    • 2014-08-19
    • US13239855
    • 2011-09-22
    • Yu-Han ChenMing-Tsan KaoChih-Hung Lu
    • Yu-Han ChenMing-Tsan KaoChih-Hung Lu
    • G06K9/46G06F21/32G06F3/01G06F1/32G06K9/00
    • G06F21/32G06F1/3231G06F3/017G06K9/00221G06K9/00248G06K9/00268G06K9/00302G06K9/00308G06K9/00315G07C9/00158
    • A recognition system is used for recognizing an operation of a user. The recognition system includes a sensor module, a processing device, a playing device, and data storage device. The sensor module is used for generating a first sensing signal according to an operation of a user. The data storage device stores a plurality of objects. The processing device compares the first sensing signal with the plurality of objects to generate a recognition result in response to the first sensing signal. The playing device is used for playing the recognition result. The sensor module is used for, after the recognition result is played, recognizing a response of the user to generate a second sensing signal, and feeding the second sensing signal back to the processing device. The processing device judges whether the recognition result corresponding to the first sensing signal is correct according to the second sensing signal.
    • 识别系统用于识别用户的操作。 识别系统包括传感器模块,处理装置,播放装置和数据存储装置。 传感器模块用于根据用户的操作产生第一感测信号。 数据存储装置存储多个对象。 处理装置将第一感测信号与多个对象进行比较,以产生响应于第一感测信号的识别结果。 播放设备用于播放识别结果。 传感器模块用于在识别结果被播放之后,识别用户的响应以产生第二感测信号,并将第二感测信号馈送回处理装置。 处理装置根据第二感测信号判断与第一感测信号对应的识别结果是否正确。
    • 2. 发明申请
    • RECOGNITION SYSTEM AND RECOGNITION METHOD
    • 识别系统和识别方法
    • US20120249293A1
    • 2012-10-04
    • US13239855
    • 2011-09-22
    • Yu-Han ChenMing-Tsan KaoChih-Hung Lu
    • Yu-Han ChenMing-Tsan KaoChih-Hung Lu
    • G08B29/00
    • G06F21/32G06F1/3231G06F3/017G06K9/00221G06K9/00248G06K9/00268G06K9/00302G06K9/00308G06K9/00315G07C9/00158
    • A recognition system is used for recognizing an operation of a user. The recognition system includes a sensor module, a processing device, a playing device, and data storage device. The sensor module is used for generating a first sensing signal according to an operation of a user. The data storage device stores a plurality of objects. The processing device compares the first sensing signal with the plurality of objects to generate a recognition result in response to the first sensing signal. The playing device is used for playing the recognition result. The sensor module is used for, after the recognition result is played, recognizing a response of the user to generate a second sensing signal, and feeding the second sensing signal back to the processing device. The processing device judges whether the recognition result corresponding to the first sensing signal is correct according to the second sensing signal.
    • 识别系统用于识别用户的操作。 识别系统包括传感器模块,处理装置,播放装置和数据存储装置。 传感器模块用于根据用户的操作产生第一感测信号。 数据存储装置存储多个对象。 处理装置将第一感测信号与多个对象进行比较,以产生响应于第一感测信号的识别结果。 播放设备用于播放识别结果。 传感器模块用于在识别结果被播放之后,识别用户的响应以产生第二感测信号,并将第二感测信号馈送回处理设备。 处理装置根据第二感测信号判断与第一感测信号对应的识别结果是否正确。
    • 5. 发明申请
    • Distance-measuring device, 3D image-sensing device, and optical touch system
    • 距离测量装置,3D图像感测装置和光学触摸系统
    • US20110134078A1
    • 2011-06-09
    • US12817172
    • 2010-06-16
    • En-Feng HsuHan-Chi LiuChih-Hung LuMing-Tsan Kao
    • En-Feng HsuHan-Chi LiuChih-Hung LuMing-Tsan Kao
    • G06F3/042G01C3/08H04N13/02
    • G01C3/08G01S7/491G01S7/497G01S17/08G06F3/0428H04N13/254
    • A distance-measuring device includes a light-emitting/sensing controlling circuit, a light-emitting component, a light-sensing group, a background-calculating circuit, a frequency-adjusting circuit, and a distance-calculating circuit. The light-emitting component emits a detecting light to a measured object. The light-emitting/sensing controlling circuit controls the light-sensing group receiving and accumulating the energy of a reflective light generated by the measured object reflecting the detecting light, so that the distance-calculating circuit can calculate a measured distance between the measured object and the distance-measuring device according the accumulated energy of the light-sensing group. In addition, the distance-measuring device calculates the energy accumulated by the light-sensing group sensing the background light per unit time, by means of the background-calculating circuit. In this way, the effect of the background light is reduced so that the distance-measuring device can more correctly calculate the measured distance.
    • 测距装置包括发光/感测控制电路,发光组件,感光组,背景计算电路,频率调节电路和距离计算电路。 发光部件向测量对象发射检测光。 发光/感测控制电路控制感光组接收并累积反射检测光的测量对象产生的反射光的能量,使得距离计算电路可以计算测量对象和 所述距离测量装置根据所述感光组的累积能量。 此外,距离测量装置通过背景计算电路来计算感测每单位时间的背景光的感光组所累积的能量。 以这种方式,减轻了背景光的影响,使得距离测量装置可以更准确地计算测量的距离。
    • 6. 发明授权
    • Distance measuring device, 3D image-sensing device, and optical touch system
    • 距离测量装置,3D图像感测装置和光学触摸系统
    • US08791924B2
    • 2014-07-29
    • US12817172
    • 2010-06-16
    • En-Feng HsuHan-Chi LiuChih-Hung LuMing-Tsan Kao
    • En-Feng HsuHan-Chi LiuChih-Hung LuMing-Tsan Kao
    • G06F3/042
    • G01C3/08G01S7/491G01S7/497G01S17/08G06F3/0428H04N13/254
    • A distance-measuring device includes a light-emitting/sensing controlling circuit, a light-emitting component, a light-sensing group, a background-calculating circuit, a frequency-adjusting circuit, and a distance-calculating circuit. The light-emitting component emits a detecting light to a measured object. The light-emitting/sensing controlling circuit controls the light-sensing group receiving and accumulating the energy of a reflective light generated by the measured object reflecting the detecting light, so that the distance-calculating circuit can calculate a measured distance between the measured object and the distance-measuring device according the accumulated energy of the light-sensing group. In addition, the distance-measuring device calculates the energy accumulated by the light-sensing group sensing the background light per unit time, by means of the background-calculating circuit. In this way, the effect of the background light is reduced so that the distance-measuring device can more correctly calculate the measured distance.
    • 测距装置包括发光/感测控制电路,发光组件,感光组,背景计算电路,频率调节电路和距离计算电路。 发光部件向测量对象发射检测光。 发光/感测控制电路控制感光组接收并累积反射检测光的测量对象产生的反射光的能量,使得距离计算电路可以计算测量对象和 所述距离测量装置根据所述感光组的累积能量。 此外,距离测量装置通过背景计算电路来计算感测每单位时间的背景光的感光组所累积的能量。 以这种方式,减轻了背景光的影响,使得距离测量装置可以更准确地计算测量的距离。
    • 7. 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。
    • 8. 发明申请
    • Variable Size Sensing System and Method for Redefining Size of Sensing Area thereof
    • 可变尺寸检测系统及其感测区域尺寸重新定义的方法
    • US20100156820A1
    • 2010-06-24
    • US12479836
    • 2009-06-07
    • Cho-Yi LINHsin-Chi ChengChih-Hung LuYi-Hsien Ko
    • Cho-Yi LINHsin-Chi ChengChih-Hung LuYi-Hsien Ko
    • G06F3/041
    • 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。