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    • 1. 发明申请
    • 3D TELEVISION BROADCASTING SYSTEM
    • 3D电视广播系统
    • WO2006014469A3
    • 2006-06-15
    • PCT/US2005023921
    • 2005-07-06
    • STEREO DISPLAY INCANGSTROM INCCHO GYOUNG ILKIM TAE HYEONGIM DONG WOOSEO CHEONG SOO
    • CHO GYOUNG ILKIM TAE HYEONGIM DONG WOOSEO CHEONG SOO
    • H04N13/04
    • G02B27/2271G02B3/14H04N13/0059H04N13/0207H04N13/042
    • Television broadcasting systems (Figure 1, element 30) of this invention comprise an imaging system (32), and transmission system (90), and a displaying system (100). The imaging system (32) captures two-dimensional images of an object at different focal plane, and generates an all-in-focused image and depth profile. A data signal carrying the image data is generated and transmitted over a broadcasting system (90) compatible with commercial two-dimensional television broadcasting, cable, and/or alternative systems. The depth profile is transmitted by using vacant space in video/audio signal within the allocated channel bandwidth. The data signal is received by the displaying system (100) and the extracts the all-in-focused image (82) and depth information (84) from the data signal. The object is restored from all-in-focused image and depth profile and displayed on the displaying system (100) as a three-dimensional spatial image (98). Viewers having conventional two-dimensional display device (96) can watch enhanced two-dimensional images.
    • 本发明的电视广播系统(图1,元件30)包括成像系统(32)和传输系统(90)和显示系统(100)。 成像系统(32)捕获不同焦平面处的物体的二维图像,并且生成全焦点图像和深度轮廓。 携带图像数据的数据信号通过与商业二维电视广播,电缆和/或替代系统兼容的广播系统(90)生成和发送。 通过在分配的信道带宽内的视频/音频信号中使用空闲空间来发送深度分布。 数据信号由显示系统(100)接收,并且从数据信号中提取全焦点图像(82)和深度信息(84)。 该对象从全焦点图像和深度分布中恢复,并在显示系统(100)上显示为三维空间图像(98)。 具有常规二维显示设备(96)的观看者可以观看增强的二维图像。
    • 4. 发明申请
    • HIGH-SPEED AUTOMATIC FOCUSING SYSTEM
    • 高速自动聚焦系统
    • WO2006019570A3
    • 2006-06-15
    • PCT/US2005023919
    • 2005-07-06
    • STEREO DISPLAY INCANGSTROM INCCHO GYOUNG ILKIM TAE HYEONGIM DONG WOOSEO CHEONG SOO
    • CHO GYOUNG ILKIM TAE HYEONGIM DONG WOOSEO CHEONG SOO
    • G03B13/00
    • G02B7/36G02B26/0833G03B13/00
    • An automatic focusing system comprises at least one micromirror array lens, an image sensor, and a signal processor. The micromirror array lens images an object and focuses the image on the image sensor. The image sensor receives the light and converts the photo energy of the light to electrical energy in the form of an electrical signal. The image sensor sends the electrical signal, which carries image data concerning the object, to the signal processor. The signal processor receives the electrical signal, compares the image quality of the image data to its focus criteria, and generates a control signal, which it sends to the micromirror array lens to adjust the focal length of the micromirror array lens. This interative process is continued until the quality of the image data meets the focus criteria, and the process is completed within the afterimage speed of the human eye.
    • 自动聚焦系统包括至少一个微镜阵列透镜,图像传感器和信号处理器。 微镜阵列透镜对物体成像并将图像聚焦在图像传感器上。 图像传感器接收光并将光的光能转换成电信号形式的电能。 图像传感器将携带关于物体的图像数据的电信号发送到信号处理器。 信号处理器接收电信号,将图像数据的图像质量与其聚焦准则进行比较,并生成控制信号,该控制信号将其发送到微镜阵列镜头以调整微镜阵列镜头的焦距。 这个交互过程一直持续到图像数据的质量满足焦点标准,并且该过程在人眼的残像速度内完成。
    • 7. 发明申请
    • TWO-DIMENSIONAL IMAGE PROJECTION SYSTEM
    • 二维图像投影系统
    • WO2006020629A4
    • 2012-02-02
    • PCT/US2005028250
    • 2005-08-09
    • STEREO DISPLAY INCANGSTROM INCCHO GYOUNG ILKIM TAE HYEONSEO CHEONG SOO
    • CHO GYOUNG ILKIM TAE HYEONSEO CHEONG SOO
    • G02B26/00G09G3/34
    • G09G3/346G09G2330/08H04N9/3161H04N9/3173H04N9/3194
    • A two-dimensional image projection device using array of micromirror array lenses and a random scanning technique is invented. Using the random scanning technique, the light efficiency is nearly doubled than that of the prior art. The invention makes a brighter and less power consuming display device possible. Because each micromirror array lens of array of micromirror array lenses can scan whole image plane, a fast self diagnosis and correction technique can be introduced in displaying device. The Self diagnosis and correction technique makes display device to maintain image quality even a few tens percent of micromirrors do not work properly. Owing to the scanning characteristics of micromirror array lens, the image projection device can express the same number of pixels image with less number of micromirrors than the prior art. This also enables small sized two-dimensional image projector, which can be incorporated in portable electronic equipments.
    • 发明了使用微镜阵列透镜阵列和随机扫描技术的二维图像投影装置。 使用随机扫描技术,光效率比现有技术几乎增加了一倍。 本发明使得可以使用更亮更少功耗的显示装置。 由于微镜阵列透镜阵列的每个微镜阵列透镜都能扫描整个图像平面,所以可以在显示装置中引入快速的自我诊断和校正技术。 自诊断和校正技术使得显示设备保持图像质量,即使几十%的微镜不能正常工作。 由于微镜阵列透镜的扫描特性,图像投影装置可以以比现有技术少的微镜数量表示相同数量的像素图像。 这也使得能够并入便携式电子设备的小尺寸二维图像投影仪。