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    • 51. 发明申请
    • INFORMATION PROCESSING APPARATUS, PROCESSING METHOD FOR THE SAME, NON-TRANSITORY COMPUTER-READABLE STORAGE MEDIUM AND IMAGE CAPTURING APPARATUS
    • 信息处理装置,其处理方法,非终端计算机可读存储介质和图像捕获装置
    • US20120269405A1
    • 2012-10-25
    • US13446898
    • 2012-04-13
    • Yuji KanedaKotaro Yano
    • Yuji KanedaKotaro Yano
    • G06K9/00
    • G06K9/00604
    • An information processing apparatus includes a face detection unit configured to detect a face of a person from an image; a storage unit configured to store dictionary data which holds information relating to faces and line-of-sight correction data corresponding to respective persons; an authentication unit configured to authenticate a person corresponding to the face detected by the face detection unit, using the information relating to faces in the dictionary data; a line-of-sight detection unit configured to detect information relating to a line of sight from the face detected by the face detection unit; and a line-of-sight correction unit configured to correct the information relating to a line of sight detected by the line-of-sight detection unit, using the line-of-sight correction data in the dictionary data corresponding to the person authenticated by the authentication unit.
    • 一种信息处理设备,包括:人脸检测单元,被配置为从图像中检测人物的脸部; 存储单元,被配置为存储保存与各个人对应的面部和视线修正数据有关的信息的字典数据; 认证单元,被配置为使用与所述词典数据中的面部相关的信息来认证与所述面部检测单元检测到的面部相对应的人; 视线检测单元,被配置为从面部检测单元检测到的面部检测与视线有关的信息; 视线校正单元,被配置为使用与通过视觉检测单元认证的人对应的字典数据中的视距校正数据来校正与由视线检测单元检测到的视线有关的信息, 认证单元。
    • 52. 发明申请
    • OBJECT DETECTION SYSTEM AND METHOD THEREFOR
    • 对象检测系统及其方法
    • US20120250939A1
    • 2012-10-04
    • US13427124
    • 2012-03-22
    • Kotaro Yano
    • Kotaro Yano
    • G06K9/62
    • G06K9/00362G06K9/6857
    • In an object detection system with a first and a second image processing apparatus, the first image processing apparatus includes a reduction unit configured to reduce an input image, a first detection unit configured to detect a predetermined object from a reduction image reduced by the reduction unit, and a transmission unit configured to transmit the input image and a first detection result detected by the first detection unit to the second image processing apparatus, and the second image processing apparatus includes a reception unit configured to receive the input image and the first detection result from the first image processing apparatus, a second detection unit configured to detect the predetermined object from the input image, and an output unit configured to output the first detection result and a second detection result detected by the second detection unit.
    • 在具有第一和第二图像处理装置的物体检测系统中,第一图像处理装置包括被配置为减少输入图像的缩小单元,被配置为从由缩小单元减少的缩小图像检测预定对象的第一检测单元 以及发送单元,被配置为将所述输入图像和由所述第一检测单元检测到的第一检测结果发送到所述第二图像处理装置,并且所述第二图像处理装置包括:接收单元,被配置为接收所述输入图像和所述第一检测结果 从第一图像处理装置,第二检测单元,被配置为从输入图像检测预定对象;以及输出单元,被配置为输出第一检测结果和由第二检测单元检测的第二检测结果。
    • 53. 发明申请
    • PATTERN RECOGNITION APPARATUS AND METHOD THEREFOR CONFIGURED TO RECOGNIZE OBJECT AND ANOTHER LOWER-ORDER OBJECT
    • 模式识别装置和配置为识别对象和其他下位对象的方法
    • US20120063674A1
    • 2012-03-15
    • US13318471
    • 2010-05-06
    • Kotaro Yano
    • Kotaro Yano
    • G06K9/68
    • G06K9/6857G06K9/00221
    • In a pattern recognition apparatus, a characteristic amount calculation unit calculates a characteristic amount for recognizing a desired object from a partial image clipped from an input pattern, a likelihood calculation unit calculates a likelihood of an object as a recognition target from the characteristic amount calculated by the characteristic amount calculation unit by referring to an object dictionary, and an object determination unit determines whether the partial image is the object as the recognition target based on the likelihood of the object calculated by the likelihood calculation unit. The likelihood calculation unit calculates the likelihood of the object as the recognition target from the characteristic amount calculated by the characteristic amount calculation unit by referring to a specific object dictionary. The object determination unit determines whether the partial image is a specific object as the recognition target from the likelihood of the object calculated by the likelihood calculation unit.
    • 在图案识别装置中,特征量计算单元从从输入图案剪辑的部分图像中计算用于识别期望对象的特征量,似然度计算单元根据由图像识别装置计算的特征量,根据由 特征量计算单元,并且对象确定单元基于由似然度计算单元计算的对象的可能性来确定部分图像是否是作为识别对象的对象。 似然度计算单元通过参照特定对象字典,根据由特征量计算单元计算出的特征量来计算对象作为识别对象的可能性。 对象确定单元根据由似然度计算单元计算的对象的似然度来确定部分图像是否是特定对象作为识别对象。
    • 55. 发明授权
    • Image forming system, apparatus, and method
    • 图像形成系统,装置和方法
    • US07532361B2
    • 2009-05-12
    • US10247282
    • 2002-09-20
    • Kotaro Yano
    • Kotaro Yano
    • G06K15/00H04N1/405
    • G06K15/00G02B27/2214
    • When a three-dimensional image viewed stereoscopically by superposition of a lenticular sheet is merely binarized and output, fringes are produced in the direction in which cylindrical lens elements repeat on the lenticular sheet, and therefore an appropriate stereoscopic image is not observed. Accordingly, a multiple viewpoint image sequence of the image of a subject is acquired, a three-dimensional stripe image is synthesized by the images of the image sequence, the stripe image is converted to a multivalued image by reducing the number of tones by the error diffusion method, the multivalued image is convened to a binary dot pattern by the density pattern method, and the dot pattern is formed on a recording medium. Any dot pattern of a prescribed plurality of dot patterns is selected in accordance with a pixel position in a direction perpendicular to the direction in which cylindrical lens elements repeat on the lenticular sheet, thereby obtaining a high-quality stereoscopic image in which the occurrence of fringes is reduced.
    • 当立体地通过双凸透镜叠片观看的三维图像仅被二值化并输出时,在柱面透镜元件在双凸透镜片上重复的方向上产生条纹,因此没有观察到适当的立体图像。 因此,获取对象的图像的多视点图像序列,通过图像序列的图像合成三维条纹图像,通过将误差数量减少而将条纹图像转换为多值图像 扩散方法,通过密度图案法将多值图像转换为二进制点图案,并且在记录介质上形成点图案。 根据与柱面透镜元件在双凸透镜片上重复的方向垂直的方向上的像素位置来选择规定的多个点图案的任何点图案,从而获得其中发生条纹的高质量立体图像 降低了。
    • 56. 发明申请
    • IMAGE PROCESSING APPARATUS AND METHOD
    • 图像处理装置和方法
    • US20090080795A1
    • 2009-03-26
    • US12273687
    • 2008-11-19
    • Kotaro Yano
    • Kotaro Yano
    • G06K9/00
    • G06T5/008G06T2207/30201
    • An image processing apparatus comprises an extractor for extracting a brightness component from image data; a scale converter for obtaining a distribution of the brightness component on relatively large scale; a brightness component improver for improving the distribution of the brightness component of the image data by using the brightness component and an output of the converter; and an image reproducer for reproducing the image data by using an output of the improver as a distribution of a brightness component of a new image, wherein the apparatus further comprises a face detector for detecting a face area from the image data, and the improver adjusts a degree of improvement by using a distribution of a brightness component of the face area being an output of the detector. Thus, it is possible to automatically adjust the degree of improvement of the luminance distribution according to the image data to be processed.
    • 一种图像处理装置,包括:提取器,用于从图像数据中提取亮度分量; 用于以较大比例获得亮度分量的分布的比例转换器; 亮度分量改进器,用于通过使用亮度分量和转换器的输出来改善图像数据的亮度分量的分布; 以及图像再现器,用于通过使用改进器的输出作为新图像的亮度分量的分布来再现图像数据,其中该装置还包括用于从图像数据检测面部区域的面部检测器,并且改进器调整 通过使用作为检测器的输出的面部区域的亮度分量的分布来改善程度。 因此,可以根据要处理的图像数据自动调整亮度分布的改善程度。
    • 57. 发明申请
    • Image processing apparatus and method
    • 图像处理装置及方法
    • US20050012832A1
    • 2005-01-20
    • US10887817
    • 2004-07-12
    • Kotaro Yano
    • Kotaro Yano
    • G06T5/40H04N9/68
    • G06T5/008G06T2207/30201
    • An image processing apparatus comprises an extractor for extracting a brightness component from image data; a scale converter for obtaining a distribution of the brightness component on relatively large scale; a brightness component improver for improving the distribution of the brightness component of the image data by using the brightness component and an output of the converter; and an image reproducer for reproducing the image data by using an output of the improver as a distribution of a brightness component of a new image, wherein the apparatus further comprises a face detector for detecting a face area from the image data, and the improver adjusts a degree of improvement by using a distribution of a brightness component of the face area being an output of the detector. Thus, it is possible to automatically adjust the degree of improvement of the luminance distribution according to the image data to be processed.
    • 一种图像处理装置,包括:提取器,用于从图像数据中提取亮度分量; 用于以较大比例获得亮度分量的分布的比例转换器; 亮度分量改进器,用于通过使用亮度分量和转换器的输出来改善图像数据的亮度分量的分布; 以及图像再现器,用于通过使用改进器的输出作为新图像的亮度分量的分布来再现图像数据,其中该装置还包括用于从图像数据检测面部区域的面部检测器,并且改进器调整 通过使用作为检测器的输出的面部区域的亮度分量的分布来改善程度。 因此,可以根据要处理的图像数据自动调整亮度分布的改善程度。
    • 58. 发明授权
    • Method and apparatus for producing silicon carbide single crystal
    • 生产碳化硅单晶的方法和装置
    • US06797060B2
    • 2004-09-28
    • US10310913
    • 2002-12-06
    • Masashi ShigetoKotaro YanoNobuyuki Nagato
    • Masashi ShigetoKotaro YanoNobuyuki Nagato
    • C30B3500
    • C30B23/02C30B23/00C30B25/00C30B29/36Y10T117/10
    • Silicon carbide single crystal is produced by allowing a silicon raw material to continuously react with a carbon raw material to generate gas, which reaches a seed crystal substrate on which a silicon carbide single crystal grows. Preferably, the silicon raw material is continuously fed onto the carbon raw material placed in a reaction crucible, and the carbon raw material is maintained at a temperature such that carbon is allowed to react with silicon in a molten state or a gaseous state to generate the reaction gas. An apparatus used for producing the silicon carbide single crystal comprises a reaction crucible, and a seed crystal substrate disposed in the reaction crucible; and further comprises means for maintaining the carbon raw material placed in the reaction crucible at a temperature such that carbon is allowed to react with silicon in a molten state or a gaseous state to generate the reaction gas, and means for continuously feeding the silicon raw material onto the carbon raw material placed in the reaction crucible.
    • 通过使硅原料与碳原料连续反应而生成碳化硅单晶,生成气体,其到达碳化硅单晶生长的晶种基板。 优选地,将硅原料连续地供给到放置在反应坩埚中的碳原料上,并且将碳原料保持在使得碳与熔融状态或气态的硅反应的温度, 反应气体。 用于制造碳化硅单晶的装置包括反应坩埚和设置在反应坩埚中的晶种衬底; 并且还包括用于将置于反应坩埚中的碳原料保持在使得碳与熔融状态或气态的硅反应以产生反应气体的温度的装置,以及用于连续供给硅原料的装置 放置在反应坩埚中的碳原料上。
    • 60. 发明授权
    • Image recognizing apparatus, image recognizing method, and program
    • 图像识别装置,图像识别方法和程序
    • US09147105B2
    • 2015-09-29
    • US13604362
    • 2012-09-05
    • Naotsugu SagawaKotaro Yano
    • Naotsugu SagawaKotaro Yano
    • G06K9/00G06K9/32
    • G06K9/00221G06K9/00362G06K9/3233
    • An image recognizing apparatus is equipped with: a detecting unit configured to detect, from an input image, a candidate area for a target of recognition, based on a likelihood of a partial area in the input image; an extracting unit configured to extract, from a plurality of candidate areas detected by the detecting unit, a set of the candidate areas which are in an overlapping relation; a classifying unit configured to classify an overlapping state of the set of the candidate areas; and a discriminating unit configured to discriminate whether or not the respective candidate areas are the target of recognition, based on the overlapping state of the set of the candidate areas and the respective likelihoods of the candidate areas.
    • 图像识别装置具有:检测单元,被配置为基于输入图像中的部分区域的可能性,从输入图像检测用于识别目标的候选区域; 提取单元,被配置为从所述检测单元检测到的多个候选区域提取一组重叠关系的候选区域; 分类单元,被配置为对所述候选区域的集合的重叠状态进行分类; 以及鉴别单元,被配置为基于候选区域的集合的重叠状态和候选区域的各自的可能性来区分各个候选区域是否是识别的目标。