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    • 71. 发明申请
    • ELECTROMAGNETIC VALVE
    • 电磁阀
    • US20150192217A1
    • 2015-07-09
    • US14412469
    • 2012-07-02
    • Masakuni SuzukiMasaki NanaharaKei SatoKatsuhiro KanamoriTakeshi Ishida
    • Masakuni SuzukiMasaki NanaharaKei SatoKatsuhiro KanamoriTakeshi Ishida
    • F16K31/06F16K11/04
    • F16K31/0624B60T8/363F16K11/04F16K27/029F16K31/0665F16K31/0675H01F2007/085
    • An electromagnetic valve includes a housing, a valve element, a movable core, a spring, a coil, and a stationary core. The housing includes a cylinder portion that houses the movable core so that the movable core is movable in an axial direction. An axial intermediate portion of the cylinder portion is formed as a non-magnetic portion that surrounds an outer circumference of an axial intermediate portion of the movable core. Both axial sides of the non-magnetic portion are formed as a one-side magnetic portion and an another-side magnetic portion that surround an outer circumference of the movable core. An electromagnetic force in a direction perpendicular to the axial direction, for generating a friction resistance to axial movement of the movable core, is set to be generated by energization of the coil between the outer circumference of the movable core and the one-side magnetic portion of the cylinder portion on one axial side of the non-magnetic portion and between the outer circumference of the movable core and the another-side magnetic portion of the cylinder portion on another axial side of the non-magnetic portion.
    • 电磁阀包括壳体,阀元件,可动芯,弹簧,线圈和固定芯。 壳体包括容纳可动芯的圆筒部,使得可动芯在轴向方向上可移动。 圆筒部的轴向中间部形成为围绕可动芯的轴向中间部的外周的非磁性部。 非磁性部分的两个轴向侧面均形成为围绕可动芯的外周的单侧磁性部分和另一侧磁性部分。 通过在可动铁芯的外周与单侧磁性部分之间的线圈通电来产生用于产生对可动铁芯的轴向运动产生摩擦阻力的轴向垂直方向的电磁力 在非磁性部分的一个轴向侧上的圆筒部分和可动铁芯的外周与非磁性部分的另一个轴向侧的气缸部分的另一侧磁性部分之间。
    • 73. 发明申请
    • MULTI-COLOR IMAGE PROCESSING APPARATUS AND SIGNAL PROCESSING APPARATUS
    • 多色图像处理装置和信号处理装置
    • US20100013948A1
    • 2010-01-21
    • US12517391
    • 2008-08-29
    • Takeo AzumaKunio NoboriTaro ImagawaKatsuhiro Kanamori
    • Takeo AzumaKunio NoboriTaro ImagawaKatsuhiro Kanamori
    • H04N5/228
    • H04N9/09H04N5/23232H04N9/045
    • A multi-color image processor according to the present invention includes an image capturing section 101 and a signal processing section 104. The image capturing section 101 includes a color separating section 10 for separating visible radiation into at least two light rays with first- and second-color components, respectively, and first and second imagers 12 and 14 that receive the light rays with the first- and second-color components. The image capturing section 101 gets images with the first- and second-color components by making the first imager 12 decimate pixels to read, but making the second imager 14 read every pixel, on a field-by-field basis on respective arrangements of pixels of the first and second imagers 12 and 14. The signal processing section 104 includes: a motion estimating section 107 for estimating, based on the images with the second-color components, a motion in a moving picture made up of images with the second-color components and outputting motion information; an image generating section 108 for generating a synthetic image of the first-color components of respective fields based on the images with the first-color components and the motion information and outputting it as a first synthetic image with a higher spatial resolution than the images with the first-color components; and a multi-color image synthesizing section 109 for generating and outputting a multi-color moving picture with the first- and second-color components based on the first synthetic image and the images with the second-color components.
    • 根据本发明的多色图像处理器包括图像捕获部分101和信号处理部分104.图像捕获部分101包括颜色分离部分10,用于将可见光辐射分成至少两个光线,第一和第二光 以及分别接收具有第一和第二颜色分量的光线的第一和第二成像器12和14。 图像拍摄部分101通过使第一成像器12抽取像素来读取第一和第二颜色分量,但是使得第二成像器14逐个逐个地读取每个像素上的各个像素的排列 信号处理部分104包括:运动估计部分107,用于基于具有第二颜色分量的图像估计由具有第二成像器12和14的图像组成的运动图像中的运动; 颜色分量和输出运动信息; 图像生成部分108,用于基于具有第一颜色分量和运动信息的图像来生成各个场的第一颜色分量的合成图像,并将其作为具有比具有更高的空间分辨率的第一合成图像输出, 第一色成分; 以及多色图像合成部109,用于基于第一合成图像和具有第二颜色分量的图像生成并输出具有第一和第二颜色分量的多色运动图像。
    • 76. 发明授权
    • Apparatus for calculating a degree of white balance adjustment for a
picture
    • 用于计算图像的白平衡调整度的装置
    • US5619347A
    • 1997-04-08
    • US533731
    • 1995-09-26
    • Kouji TaniguchiKatsuhiro Kanamori
    • Kouji TaniguchiKatsuhiro Kanamori
    • H04N9/79H04N1/48H04N9/73
    • H04N9/735
    • Pieces of white balance information indicating color features of a colored picture or picture blocks obtained by partitioning the colored picture are extracted from piece of picture data of the colored picture in an extracting unit. Whether or not a white region exist in the colored picture is judged in a white region judging unit according to the white balance information indicating the color features of the colored picture. When the existence of the white region is judged, a white balance coefficient is calculated in a white balance calculating unit to make the white region white. In contrast, when no existence of any white region is judged, a color distribution axis extending from an original point of a color space to a gravity center of the white balance information indicating the color features of the picture blocks from which pieces of white balance information corresponding to picture blocks of a high chromatic color or a uniform chromaticity are removed is detected in a color distribution axis detecting unit, and the white balance coefficient is calculated to set the color distribution axis to an achromatic color axis of the color space. Therefore, a white balance adjustment adapted to color features of each of colored pictures can be performed.
    • 从提取单元中的彩色图像的图像数据中提取指示通过划分彩色图像而获得的彩色图像或图像块的颜色特征的白平衡信息。 根据指示彩色图像的颜色特征的白平衡信息,在白色区域判断单元中判断彩色图像中是否存在白色区域。 当判断白区的存在时,在白平衡计算单元中计算出白平衡系数,以使白区成为白色。 相反,当不存在任何白色区域的情况下,从颜色空间的原始点延伸到指示图像块的颜色特征的白平衡信息的重心的颜色分布轴,其中白平衡信息 在颜色分布轴检测单元中检测到与高色彩或均匀色度的图像块相对应的图像块,并且计算白平衡系数以将颜色分布轴设置为色彩空间的无色色轴。 因此,可以执行适于彩色图像的每个颜色特征的白平衡调整。
    • 77. 发明授权
    • Image processing apparatus
    • 图像处理装置
    • US08648907B2
    • 2014-02-11
    • US13571686
    • 2012-08-10
    • Katsuhiro Kanamori
    • Katsuhiro Kanamori
    • H04N13/00
    • G02B23/2461A61B1/00009A61B1/00096A61B1/045A61B1/0646G02B27/28H04N5/2351
    • An exemplary image processing apparatus comprises: a polarized light source section; an image capturing section which sequentially captures an image of the object that is being illuminated with each of three or more plane polarized light rays; and an image processing section. The image processing section includes: a varying intensity processing section which calculates a state of polarized light reflected from the object's surface; a reflection decision section which distinguishes a multi-reflection region in which incoming light is reflected twice from a recessed region from a once-reflected region in which the incoming light is reflected only once from the object's surface; and a mirror image search section which locates a pair of multi-reflection regions. Based on the pair of multi-reflection regions, the image processing section generates an image representing the recessed region on the object's surface.
    • 一种示例性图像处理设备包括:偏振光源部分; 图像拍摄部,其以三个以上的平面偏振光中的每一个依次拍摄被照明的被摄体的图像; 和图像处理部。 图像处理部包括:变化强度处理部,计算从物体的表面反射的偏振光的状态; 反射判定部,其将入射光从入射光从物体的表面反射一次的一次反射区域从凹陷区域反射两次的多反射区域区分开; 以及定位一对多反射区域的镜像搜索部。 基于一对多反射区域,图像处理部分生成表示物体表面上的凹陷区域的图像。
    • 79. 发明申请
    • IMAGE GENERATION DEVICE AND IMAGE GENERATION METHOD
    • 图像生成装置和图像生成方法
    • US20110102551A1
    • 2011-05-05
    • US13001627
    • 2009-07-28
    • Masahiro IwasakiLorcan Mac ManusNeil DodgsonKatsuhiro Kanamori
    • Masahiro IwasakiLorcan Mac ManusNeil DodgsonKatsuhiro Kanamori
    • H04N13/02H04N5/262H04N5/225
    • G06T3/40G06T15/04G06T15/50G06T2210/36
    • Provided is an image generation device generating a high-quality image of an object under a pseudo light source at any desired position, based on geometric parameters generated from a low-quality image of the object. The image generation device includes: a geometric parameter calculation unit (102) that calculates a first geometric parameter regarding a shape of a surface from light source position, viewpoint position, and geometric normal information regarding the shape; a high-resolution database unit (103) that stores an exemplum indicating a mesostructure of a portion of the surface and has a spatial resolution higher than the geometric normal information; an exemplum expansion unit (104) that increases the exempla to be spatially expanded; a geometric parameter modification unit (105) that modifies the first geometric parameter using the increased exempla; and an image generation unit (106) that generates an output image by applying the modified geometric parameter to a reflection model.
    • 提供了一种图像生成装置,其基于从对象的低质量图像生成的几何参数,在任何期望位置处在伪光源下生成对象的高质量图像。 该图像生成装置具备:几何参数计算部(102),其从光源位置,视点位置以及关于形状的几何法线信息计算关于表面形状的第一几何参数; 高分辨率数据库单元(103),其存储指示所述表面的一部分的介观结构并且具有高于所述几何法线信息的空间分辨率的示例; 示例性扩展单元(104),其增加要在空间上扩展的示例; 使用增加的示例来修改第一几何参数的几何参数修改单元(105); 以及通过将修改后的几何参数应用于反射模型来生成输出图像的图像生成部(106)。
    • 80. 发明授权
    • Multi-color image processing apparatus and signal processing apparatus
    • 多色图像处理装置和信号处理装置
    • US07825968B2
    • 2010-11-02
    • US12517391
    • 2008-08-29
    • Takeo AzumaKunio NoboriTaro ImagawaKatsuhiro Kanamori
    • Takeo AzumaKunio NoboriTaro ImagawaKatsuhiro Kanamori
    • H04N5/225H04N5/228
    • H04N9/09H04N5/23232H04N9/045
    • A multi-color image processor according to the present invention includes an image capturing section 101 and a signal processing section 104. The image capturing section 101 includes a color separating section 10 for separating visible radiation into at least two light rays with first- and second-color components, respectively, and first and second imagers 12 and 14 that receive the light rays with the first- and second-color components. The image capturing section 101 gets images with the first- and second-color components by making the first imager 12 decimate pixels to read, but making the second imager 14 read every pixel, on a field-by-field basis on respective arrangements of pixels of the first and second imagers 12 and 14. The signal processing section 104 includes: a motion estimating section 107 for estimating, based on the images with the second-color components, a motion in a moving picture made up of images with the second-color components and outputting motion information; an image generating section 108 for generating a synthetic image of the first-color components of respective fields based on the images with the first-color components and the motion information and outputting it as a first synthetic image with a higher spatial resolution than the images with the first-color components; and a multi-color image synthesizing section 109 for generating and outputting a multi-color moving picture with the first- and second-color components based on the first synthetic image and the images with the second-color components.
    • 根据本发明的多色图像处理器包括图像捕获部分101和信号处理部分104.图像捕获部分101包括颜色分离部分10,用于将可见光辐射分成至少两个光线,第一和第二光 以及分别接收具有第一和第二颜色分量的光线的第一和第二成像器12和14。 图像拍摄部分101通过使第一成像器12抽取像素来读取第一和第二颜色分量,但是使得第二成像器14逐个逐个地读取每个像素上的各个像素的排列 信号处理部分104包括:运动估计部分107,用于基于具有第二颜色分量的图像估计由具有第二成像器12和14的图像组成的运动图像中的运动; 颜色分量和输出运动信息; 图像生成部分108,用于基于具有第一颜色分量和运动信息的图像来生成各个场的第一颜色分量的合成图像,并将其作为具有比具有更高的空间分辨率的第一合成图像输出, 第一色成分; 以及多色图像合成部109,用于基于第一合成图像和具有第二颜色分量的图像生成并输出具有第一和第二颜色分量的多色运动图像。