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    • 3. 发明授权
    • Image capturing device which sets color conversion parameters based on an image sensor and separate light sensor
    • 基于图像传感器和单独的光传感器设置颜色转换参数的图像捕获装置
    • US08149294B2
    • 2012-04-03
    • US12477609
    • 2009-06-03
    • Yasuhiro KomiyaShinya KonoMasanori MitsuiAkira Matsushita
    • Yasuhiro KomiyaShinya KonoMasanori MitsuiAkira Matsushita
    • H04N9/73H04N5/225
    • H04N9/735
    • An imaging device 11, in which photoelectric conversion is performed by an imaging element 16 for acquiring an image of a subject formed by the photographing lens 12, comprising a light source estimation unit 31 for generating estimated light source information for estimating a light source of the subject, on the basis of an image signal acquired by the imaging device 16; an light source sensor 18 for detecting a spectrum of the light source; a light source sensor information calculation unit 32 for generating a light source sensor information including the spectrum based on the spectrum; a color conversion parameter calculation unit 33 for calculating the color conversion parameters of the image signal based on the estimated light source information and the light source sensor information; and, a color conversion processing unit 34 for performing color conversion of the image signal by using the color conversion parameters. This allows the imaging device to realize precise color reproduction with an improved accuracy.
    • 一种成像装置11,其中通过用于获取由拍摄镜头12形成的被摄体的图像的摄像元件16进行光电转换,包括:光源估计单元31,用于产生估计光源的估计光源信息; 基于由成像装置16获取的图像信号; 用于检测光源的光谱的光源传感器18; 光源传感器信息计算单元32,用于基于光谱产生包括光谱的光源传感器信息; 颜色转换参数计算单元33,用于基于所估计的光源信息和光源传感器信息计算图像信号的颜色转换参数; 以及颜色转换处理单元34,用于通过使用颜色转换参数来执行图像信号的颜色转换。 这允许成像装置以提高的精度实现精确的颜色再现。
    • 6. 发明授权
    • Information processing apparatus, and information processing method
    • 信息处理装置和信息处理方法
    • US07346409B2
    • 2008-03-18
    • US11441401
    • 2006-05-26
    • Yasuaki NakajimaMayuko KishimotoAkira Matsushita
    • Yasuaki NakajimaMayuko KishimotoAkira Matsushita
    • G06F19/00
    • G06N5/045
    • There is provided an information processing apparatus that allows a user to understand what kinds of causes are accumulated stepwise in what kind of order to cause abnormality and due to what kinds of reasons respective causes occur from direct causes of the respective causes. The information processing apparatus includes: an inference unit that infers, when abnormality occurs in a product manufactured by manufacturing equipment and the abnormality is caused by stepwise accumulation of plural causes, a fundamental cause of the abnormality by specifying the causes stepwise and, at least at certain one stage, selectively specifying one cause out of two or more direct causes that cause a cause at the stage using at least inference data stored in advance; a reason acquiring unit that acquires, for each of the causes specified stepwise, data concerning reasons why the cause occurs from a storage device; and a display control unit that causes a display unit to display, for each of the reasons, the data concerning the respective reasons in association with related causes concerning the respective reasons.
    • 提供了一种信息处理装置,其允许用户以什么样的顺序逐步地累积什么样的原因以引起异常,并且由于各种原因的直接原因导致各种原因的种类原因。 该信息处理装置包括:推断单元,其在由制造设备制造的产品中发生异常时发生异常,并且由于多个原因的逐步累积引起异常,是逐步指定原因的基本原因,并且至少在 在一个阶段中,使用至少预先存储的推理数据,选择性地指出在舞台上造成原因的两个或更多个直接原因中的一个原因; 原因获取单元,针对从存储装置发生原因的原因逐步地指定的每个原因; 以及显示控制单元,其使得显示单元基于各种原因与关于各种原因的相关原因相关联地显示关于各种原因的数据。
    • 8. 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。
    • 9. 发明申请
    • Optical component anti-fogging system, oral cavity internal observation device, and anti-fogging method
    • 光学部件防雾系统,口腔内部观察装置,防雾法
    • US20080076087A1
    • 2008-03-27
    • US11901857
    • 2007-09-19
    • Takuji HorieHiroyoshi KobayashiAkira Matsushita
    • Takuji HorieHiroyoshi KobayashiAkira Matsushita
    • G02B1/00A61C1/00
    • G02B27/0006A61C1/088
    • A sufficient anti-fogging effect for an optical component is realized, regardless of variation in resistance value of a transparent conductive film over time. There is provided an anti-fogging system for an optical component, comprising a transparent conductive film covering a surface of an optical component that reflects or transmits light, a resistance value detection section for detecting a resistance value of the transparent conductive film, a characteristic storage section for storing an electrical temperature characteristic of the transparent conductive film, a control section for controlling power supplied to the transparent conductive film based on the electrical temperature characteristic stored in the characteristic storage section and resistance value of the transparent conductive film detected by the resistance value detection section, and a temperature characteristic update section for updating the temperature characteristic of the transparent conductive film stored in the characteristic storage section.
    • 无论透明导电膜的电阻值随时间的变化如何,都能实现对光学部件的充分防雾效果。 提供了一种用于光学部件的防雾系统,包括覆盖反射或透射光的光学部件的表面的透明导电膜,用于检测透明导电膜的电阻值的电阻值检测部,特征存储 用于存储透明导电膜的电温特性的部分,控制部分,用于根据存储在特征存储部分中的电气温度特性和由电阻值检测的透明导电膜的电阻值来控制提供给透明导电膜的电力 检测部分和用于更新存储在特征存储部分中的透明导电膜的温度特性的温度特性更新部分。