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    • 11. 发明授权
    • Image display projector having a drive unit for moving either a Fresnel lens or a diffusion member
    • 图像显示投影仪具有用于移动菲涅尔透镜或漫射构件的驱动单元
    • US07816637B2
    • 2010-10-19
    • US11730544
    • 2007-04-02
    • Atsushi MichimoriJunichi AizawaTomohiro SasagawaHiroaki Sugiura
    • Atsushi MichimoriJunichi AizawaTomohiro SasagawaHiroaki Sugiura
    • H01L27/00
    • G03B21/56
    • An image display projector is provided so as to reduce scintillation. The image display projector comprises: an optical engine for emitting light according to an inputted imaging signal; a Fresnel lens disposed to receive the light emitted from the optical engine, for emitting the incident light as collimated one; a diffusion member, placed in front of the Fresnel lens in the light-traveling direction, for diffusing the collimated light emitted from the Fresnel lens; and a drive unit for moving either the Fresnel lens or the diffusion member, along a predetermined track (orbit), in a plane parallel to either the plane from which the collimated light or the diffused light is emitted. And then, the moving velocity of either the Fresnel lens or the diffusion member is at any moment larger than zero in any direction within the parallel plane.
    • 提供图像显示投影仪以减少闪烁。 图像显示投影仪包括:根据输入的成像信号发光的光学引擎; 菲涅耳透镜,设置成接收从光学引擎发射的光,用于将入射光发射为准直的; 扩散构件,其在光行进方向上放置在菲涅耳透镜的前方,用于使从菲涅耳透镜发射的准直光扩散; 以及用于沿着预定轨道(轨道)移动菲涅尔透镜或扩散构件的平面中的平面的飞机的驱动单元,所述平面与准直光或扩散光的平面平行。 然后,菲涅尔透镜或漫射构件的移动速度在平行平面内的任何方向上都大于零。
    • 13. 发明申请
    • Image electric projector and image displaying method
    • 图像投影机和图像显示方法
    • US20070247707A1
    • 2007-10-25
    • US11730544
    • 2007-04-02
    • Atsushi MichimoriJunichi AizawaTomohiro SasagawaHiroaki Sugiura
    • Atsushi MichimoriJunichi AizawaTomohiro SasagawaHiroaki Sugiura
    • G03B21/56
    • G03B21/56
    • An image display projector and a method of displaying images are provided so as to enable reducing the occurrence of scintillation. The image display projector comprises: an optical engine for emitting light according to an inputted imaging signal; a Fresnel lens disposed to receive the light emitted from the optical engine, for emitting the incident light as collimated one; a diffusion member, placed in a position frontal to the Fresnel lens in the light-traveling direction, for emitting diffused light, by diffusing the collimated light emitted from the Fresnel lens; and a drive unit for moving either the Fresnel lens or the diffusion member, along a predetermined track (orbit), in a plane parallel to either the one from which the collimated light is emitted or the one from which the diffused light is emitted. And then, the moving velocity of either the Fresnel lens or the diffusion member is at any moment larger than zero in any direction within the parallel plane.
    • 提供图像显示投影仪和显示图像的方法,以便能够减少闪烁的发生。 图像显示投影仪包括:根据输入的成像信号发光的光学引擎; 菲涅耳透镜,设置成接收从光学引擎发射的光,用于将入射光发射为准直的; 扩散构件,通过使从菲涅尔透镜发射的准直光扩散,放置在光行进方向上与菲涅尔透镜相对的位置,用于发射漫射光; 以及驱动单元,用于沿与预定轨迹(轨道)平行的平面中的任何一个或多个发射有扩散光的菲尼尔透镜或漫射构件的驱动单元。 然后,菲涅尔透镜或漫射构件的移动速度在平行平面内的任何方向上都大于零。
    • 17. 发明申请
    • Pixel signal processor and pixel signal processing method
    • 像素信号处理器和像素信号处理方法
    • US20070019087A1
    • 2007-01-25
    • US10582501
    • 2005-07-22
    • Tetsuya KunoJunko MakitaHiroaki SugiuraNarihrio MatobaMasashi Tamura
    • Tetsuya KunoJunko MakitaHiroaki SugiuraNarihrio MatobaMasashi Tamura
    • H04N9/04
    • H04N9/045
    • A pixel signal having a k-th spectral characteristic at a pixel interpolation position occupied by a pixel signal having an h-th spectral characteristic is generated from a set of pixel signals arrayed in a two-dimensional plane, each having one of a plurality of spectral characteristics, by calculating a difference between low-frequency components, corresponding to a degree of correlation between pixel signals having the k-th and h-th spectral characteristics in a neighborhood of the pixel interpolation position (8r, 8g, 8b, 24k, 24h, 26), calculating a non-correlation value corresponding to a degree of non-correlation between the pixel signals having the k-th and h-th spectral characteristics in the neighborhood of the pixel interpolation position (7r, 7g, 7b, 23k, 23h, 25), and obtaining the pixel signal having the k-th spectral characteristic at the pixel interpolation position by using the calculated difference and the non-correlation value (27, 28, 29). Accurate interpolation can be performed despite various different correlation relationships between color component values.
    • 在由二维平面中排列的像素信号的集合中生成具有由具有第h个光谱特性的像素信号占据的像素插值位置处的第k个光谱特性的像素信号,每个像素信号具有多个 频谱特性,通过计算与像素内插位置(8 r,8 g,8 b)相邻的第k和第h个光谱特性的像素信号之间的相关度相对应的低频分量之间的差异 ,24k,24h,26),计算与像素内插位置(7r)附近的第k和第h光谱特性的像素信号之间的非相关程度对应的非相关值 ,7g,7b,23k,23h,25),并且通过使用所计算的差异和非相关值(27,28,29)获得具有在像素插值位置处的第k个光谱特性的像素信号 )。 尽管颜色分量值之间存在各种不同的相关关系,仍可进行准确的插值。
    • 19. 发明授权
    • Video signal processor for detecting flesh tones in am image
    • 用于检测图像中的肉色的视频信号处理器
    • US5488429A
    • 1996-01-30
    • US999741
    • 1992-12-31
    • Kazuaki KojimaTetsuya KunoHiroaki SugiuraTakeshi Yamada
    • Kazuaki KojimaTetsuya KunoHiroaki SugiuraTakeshi Yamada
    • H04N9/04H04N5/208H04N5/232H04N5/235H04N9/64H04N9/68H04N9/74H04N9/75
    • H04N5/2621H04N5/208H04N5/23212H04N5/2351H04N9/643H04N9/646H04N9/75
    • A flesh-tone area is detected based on color-difference and luminance signals constituting video signals, and luminance correction, color correction, and aperture correction are performed only on the flesh-tone area or a human face area identified in the flesh-tone area. The setting of a focus area or the setting of a photometric area for iris control, automatic gain control, automatic shutter control, etc., in a video camera, is performed with respect to the flesh-tone area or the human face area. Furthermore, based on the color-difference and luminance signals constituting the video signals, a background area is detected, and the video signals are divided into components representing a background area and components representing an object area. An image signal of a desired hue or a still image is superimposed on the detected background area, or special processing is performed on the video signals representing the object area other than the detected background area.
    • 基于构成视频信号的色差和亮度信号检测肉色区域,仅在肉色区域或肉色区域中识别的人脸区域进行亮度校正,颜色校正和孔径校正 。 相对于肉色区域或人脸区域,执行摄像机中的焦点区域的设置或用于光圈控制,自动增益控制,自动快门控制等的测光区域的设置。 此外,基于构成视频信号的色差信号和亮度信号,检测背景区域,将视频信号分割成表示背景区域的分量和表示对象区域的分量。 所需色调或静止图像的图像信号叠加在检测到的背景区域上,或者对表示除了检测到的背景区域之外的对象区域的视频信号进行特殊处理。