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    • 51. 发明授权
    • Color reproducing device
    • 彩色再现装置
    • US06885476B2
    • 2005-04-26
    • US10217837
    • 2002-08-13
    • Yasuhiro KomiyaKensuke IshiiNagaaki OhyamaMasahiro YamaguchiTakashi Obi
    • Yasuhiro KomiyaKensuke IshiiNagaaki OhyamaMasahiro YamaguchiTakashi Obi
    • H04N9/79G01N21/25G06T1/00H04N1/56H04N1/60G06K15/00
    • H04N1/6086H04N1/603H04N1/6088
    • In a color reproduction device, an input profile that is referenced in converting an input image from an image input device into a device-independent color image is created based on image input device information, shooting- and observation-time lighting data, and subject data, allowing accurate conversion of the input image to the device-independent color image. In reproducing the image by an image output device, the spectral reflectance of the subject itself is calculated from image input device information and shooting-time lighting data, thereby reducing the effect of the shooting-time lighting. The colors of the subject under observation lighting are calculated from observation-time lighting data. A color reproduced image is estimated accurately on the basis of the subject data even if the input image has little information.
    • 在彩色再现装置中,基于图像输入装置信息,拍摄和观察时间照明数据以及被摄体数据,创建将从图像输入装置输入的图像转换为与装置无关的彩色图像中参考的输入曲线 ,允许将输入图像精确转换为与设备无关的彩色图像。 在通过图像输出装置再现图像时,根据图像输入装置信息和拍摄时间照明数据计算被摄体本身的光谱反射率,从而降低拍摄时间照明的效果。 观察照明下的被摄体的颜色由观察时间照明数据算出。 即使输入图像信息很少,也可以基于被摄体数据精确地估计彩色再现图像。
    • 53. 发明授权
    • Multi-display device and multi-display system
    • 多显示设备和多显示系统
    • US06513938B2
    • 2003-02-04
    • US09803710
    • 2001-03-09
    • Akihiro KubotaYasuhiro KomiyaMasaki Higurashi
    • Akihiro KubotaYasuhiro KomiyaMasaki Higurashi
    • G03B2126
    • G03B21/10H04N9/3147
    • The present invention provides a multi-display device that has a plurality of projectors and constructs one image as a whole. Partial images projected on a screen from the projectors overlap to have the edges thereof superposed on edges of adjoining partial images in shared fields on the screen. A sheet interceptor intercepts part of light to be projected on a shared field so that the luminance level in the shared field will agree with the luminance levels in the other fields except the shared fields. An interceptor portion of the sheet interceptor, which intercepts light from the right-hand side of a range on the screen within which a partial image is projected, can be displaced horizontally relative to an interceptor portion thereof that intercepts light from the left-hand side thereof. Likewise, an interceptor portion of the sheet interceptor that intercepts light from the upper side of the projected range can be displaced vertically relative to an interceptor portion thereof that intercepts light from the lower side thereof.
    • 本发明提供一种多显示装置,其具有多个投影仪并构成一个图像作为整体。 从投影仪投影在屏幕上的部分图像重叠,使其边缘叠加在屏幕上的共享字段中的相邻部分图像的边缘上。 薄片拦截器拦截要投射在共享场上的光的一部分,使得共享字段中的亮度级别与除了共享字段之外的其他字段中的亮度级别一致。 拦截来自屏幕上的范围右侧的光的拦截器部分可以相对于其拦截来自左侧的光的拦截器部分水平移位 其中。 同样地,拦截来自投影范围的上侧的光的片材拦截器的拦截器部分可以相对于其截取来自其下侧的光的拦截器部分垂直移位。
    • 56. 发明授权
    • Still camera apparatus
    • 静物相机
    • US5172233A
    • 1992-12-15
    • US667960
    • 1991-03-12
    • Takafumi YoshiharaYasuhiro Komiya
    • Takafumi YoshiharaYasuhiro Komiya
    • G02B27/64G01S3/786G01T1/29G02B7/36G03B5/00H04N5/232
    • H04N5/23254G01S3/786G01T1/2978G02B7/36H04N5/23248H04N5/23287
    • In an electronic still camera apparatus wherein an image of an object is incident on an image pickup surface of a CCD through an optical lens, the object image passed the optical lens is divided into a portion entering the CCD and a portion entering a two-dimensional PSD. The two-dimensional PSD detects a center of gravity of a light distribution of the object image, and a detection signal is supplied to a deviation detector comprising a sample-hold circuit and a differential amplifier. The deviation detector stores the detection signal at the time of start of image pickup, and the differential amplifier compares the stored signal and a detection signal output from the PSD during image pickup. A deviation detection signal corresponding to the comparison result is output. On the basis of the deviation detection signal, at least one of the optical lens and the CCD is moved in a direction perpendicular to the optical axis of the optical lens so as to reduce the deviation of the center of gravity of the light distribution to zero.
    • 在其中物体的图像通过光学透镜入射到CCD的图像拾取表面上的电子静态照相机装置中,通过光学透镜的物体图像被分成进入CCD的部分和进入二维 PSD。 二维PSD检测对象图像的光分布的重心,并且将检测信号提供给包括采样保持电路和差分放大器的偏差检测器。 偏差检测器存储图像拾取开始时的检测信号,并且差分放大器比较存储的信号和在图像拾取期间从PSD输出的检测信号。 输出与比较结果对应的偏差检测信号。 基于偏差检测信号,光学透镜和CCD中的至少一个在与光学透镜的光轴垂直的方向上移动,以将光分布的重心偏离减小到零 。
    • 57. 发明授权
    • Automatic focusing apparatus
    • 自动对焦装置
    • US4990947A
    • 1991-02-05
    • US458166
    • 1989-12-28
    • Yasuhiro KomiyaTatsuo Nagasaki
    • Yasuhiro KomiyaTatsuo Nagasaki
    • G03B13/36G02B7/34G02B7/36
    • G02B7/365
    • An automatic focusing apparatus comprises a photographic optical system for forming an optical image of an object, an optical system driving circuit for moving the photographic optical system in a direction of its optical axis, a storage circuit for prestoring a plurality of MTF ratios corresponding to a plurality of focusing states of the photographic optical system, an image sensor for detecting the optical image, a spatial frequency component extracting circuit for extracting a plurality of spatial frequency components from image signals output from the image sensor, a calculating circuit for calculating a ratio between spatial frequency components representing different focusing states at every common frequency from the spatial frequency components extracted by the spatial frequency extracting circuit, a defocus detecting circuit for detecting a defocus amount and a focusing direction from the spatial frequency component ratios calculated by the calculating circuit and the MTF ratios stored in the storage circuit, and a driving control circuit for calculating an amount and a direction of movement of the photographic optical system from the detection result from the defocus circuit, and outputting the calculating result to the optical system driving circuit.
    • 一种自动对焦装置,包括:用于形成物体的光学图像的照相光学系统;用于使摄影光学系统在其光轴方向上移动的光学系统驱动电路;存储电路,用于预先存储对应于 摄影光学系统的多个聚焦状态,用于检测光学图像的图像传感器,用于从图像传感器输出的图像信号中提取多个空间频率分量的空间频率分量提取电路,计算电路, 空间频率分量,表示从由空间频率提取电路提取的空间频率分量的每个公共频率处的不同聚焦状态;散焦检测电路,用于从由计算电路计算出的空间频率分量比检测散焦量和聚焦方向, MTF法 存储在存储电路中的驱动控制电路,以及用于从散焦电路的检测结果计算摄影光学系统的量和移动方向的驱动控制电路,并将计算结果输出到光学系统驱动电路。
    • 59. 发明申请
    • DIGITAL CAMERA
    • 数码相机
    • US20120044394A1
    • 2012-02-23
    • US13193778
    • 2011-07-29
    • Yasuhiro KomiyaNobuyuki Watanabe
    • Yasuhiro KomiyaNobuyuki Watanabe
    • H04N9/07
    • H04N9/045H04N5/3456H04N9/67
    • A multi-spectral imaging device includes pixels R, G, B, λ1, λ2, . . . , λ12 composing color sensors for four or more colors having mutually differing spectral sensitivity characteristics. In a first signal readout mode, an image signal including all of four or more types of signals read from the pixels composing the color sensors for the four or more colors is read from the multi-spectral imaging device. In a second signal readout mode, an image signal having a smaller number of colors than that of the first signal readout mode is read such that a narrower gamut than a gamut that can be reproduced by the image signal read in the first signal readout mode is formed.
    • 多光谱成像装置包括像素R,G,B,λ1,λ2,...。 。 。 ,λ12组成用于具有相互不同的光谱灵敏度特性的四种或更多种颜色的颜色传感器。 在第一信号读出模式中,从多光谱成像装置读取包括从构成四种或更多种颜色的颜色传感器的像素读取的四种或更多种类型的信号的图像信号。 在第二信号读出模式中,读取具有比第一信号读出模式少的颜色数量的图像信号,使得比在第一信号读出模式中读取的图像信号可以再现的色域更窄的色域是 形成。
    • 60. 发明申请
    • MULTIBAND IMAGE PICKUP METHOD AND DEVICE
    • 多画面图像拾取方法和装置
    • US20110149126A1
    • 2011-06-23
    • US12645121
    • 2009-12-22
    • Masanori MitsuiTakeyuki AjitoYasuhiro KomiyaAkira Matsushita
    • Masanori MitsuiTakeyuki AjitoYasuhiro KomiyaAkira Matsushita
    • H04N5/335
    • H04N9/045H04N5/349H04N2209/046
    • The invention provides a multiband image pickup method and device with good color reproducibility, which is capable of imaging a subject with a number of imaging bands of not less than 4 colors and obtain a color image of not less than 3 colors without lowering spatial resolution. A first imaging of a subject image is performed by a single-plate imaging device having a color filter composed of 5 colors of R, O, G, C and B. A control unit shifts the imaging element by a shift drive unit so that each light having formed an image on the each filter of R, B and G of the color filters forms an image on a position of the each filter of O, C and G of the color filters and, thereafter a second imaging is performed. A image processing unit generates 2 3-band Bayer images based on captured images obtained by the first imaging and the second imaging, and generates a multiband image of not less than 3 colors from them.
    • 本发明提供了一种具有良好的色彩再现性的多频带摄像方法和装置,其能够对具有不少于4种颜色的多个成像带进行拍摄的对象进行成像,并获得不少于3种颜色的彩色图像,而不降低空间分辨率。 通过具有由R,O,G,C和B的5种颜色组成的滤色器的单板成像装置进行被摄体图像的第一成像。控制单元通过移位驱动单元移动成像元件, 在滤色器的R,B和G的每个滤光器上形成图像的光在滤色器的O,C和G的每个滤光器的位置上形成图像,然后进行第二次成像。 图像处理单元基于通过第一成像和第二成像获得的拍摄图像生成2个3波段拜耳图像,并且从它们生成不少于3种颜色的多频带图像。