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    • 74. 发明授权
    • Pattern processing apparatus and method, and program
    • 图案处理装置及方法及程序
    • US09117111B2
    • 2015-08-25
    • US12963568
    • 2010-12-08
    • Katsuhiko MoriMasami KatoYoshinori ItoTakahisa Yamamoto
    • Katsuhiko MoriMasami KatoYoshinori ItoTakahisa Yamamoto
    • G06K9/68G06K9/00
    • G06K9/00281
    • Even when a local area is varied, degradation in recognition accuracy and detection accuracy is suppressed. To that end, a pattern processing apparatus includes a reference local area setting portion 1802 for setting a reference local area based on the detection result of a feature point by a face organ feature point detecting portion 101, a varied local area generating portion 1803 for generating a plurality of varied local area patterns by referring to an image area near the reference local area, a similarity calculating portion 106 for calculating similarities in the reference local areas and in the varied local area patterns between the input pattern and the registered pattern, a representative similarity calculating portion 107 for calculating representative similarity from among the similarities, and a classifying portion 109 for determining a class to which the input pattern belongs.
    • 即使局部区域变化,也能够抑制识别精度和检测精度的劣化。 为此,图案处理装置包括:基准局部区域设定部1802,用于基于面部特征点检测部101的特征点的检测结果来设定基准局部区域;变化的局部区域生成部1803, 通过参考参考局部区域附近的图像区域的多个变化的局部区域图案,计算参考局部区域和输入图案与登记图案之间的变化的局部区域图案中的相似度的相似度计算部分106, 相似度计算部分107,用于从相似度中计算代表性相似度;以及分类部分109,用于确定输入模式所属的类别。
    • 78. 发明授权
    • Image conversion method and apparatus, and pattern identification method and apparatus
    • 图像转换方法和装置,以及图案识别方法和装置
    • US08340439B2
    • 2012-12-25
    • US12819003
    • 2010-06-18
    • Yusuke MitaraiMasakazu MatsuguKatsuhiko Mori
    • Yusuke MitaraiMasakazu MatsuguKatsuhiko Mori
    • G06K9/62
    • G06K9/38G06K9/6251
    • In an image conversion method, a value which reflects the mutual relationship between the classes of pixel patterns each formed from a pixel classified as one of a plurality of classes and peripheral pixels is set as a converted value corresponding to each of the plurality of classes, a pixel of interest is sequentially selected from the input image, and a pixel pattern formed from the selected pixel of interest and a predetermined number of pixels around it is classified as one of the plurality of classes in accordance with a neighboring pattern obtained based on the relationship between the value of the pixel of interest and the values of peripheral pixels located at predetermined relative positions with respect to the pixel of interest. The value of the pixel of interest is converted into a converted value set for a class to which the pixel of interest has been classified.
    • 在图像转换方法中,反映从分类为多个类别和周边像素之一的像素形成的像素图案的类别之间的相互关系的值被设置为与多个类别中的每一个对应的转换值, 从输入图像顺序选择感兴趣的像素,并且根据所选择的感兴趣像素形成的像素图案和其周围的预定数量的像素被分类为根据基于 感兴趣像素的值与位于相对于感兴趣像素的预定相对位置的周边像素的值之间的关系。 感兴趣像素的值被转换为对感兴趣的像素已被分类的类的转换值集合。
    • 80. 发明授权
    • Method for manufacturing battery case and method for manufacturing hermetic battery
    • 电池壳体的制造方法以及密封电池的制造方法
    • US08268020B2
    • 2012-09-18
    • US12095077
    • 2007-11-26
    • Katsuhiko Mori
    • Katsuhiko Mori
    • H01M4/82
    • H01M2/0285B21D51/18B23D21/00B23D21/006H01M2/022H01M2/027H01M2/0275Y10T29/49108
    • A battery case is formed by drawing a metallic plate thin to form a cylindrical body 10 having a closed end and cutting away part of the cylindrical body 10 at an opening 11 thereof in the direction perpendicular to an axis of the cylindrical body 10. The cutting of the cylindrical body 10 is carried out by moving a second blade 30 arranged outside the cylindrical body 10 relatively toward the axis of the cylindrical body with a first blade kept abutting the inner circumference of the cylindrical body 10. As a result, an inward burr 13 extending in the direction perpendicular to the side face of the cylindrical body 10 is formed on a cut surface 12 of the cylindrical body 10, but the burr 13 is prevented from entering the battery case.
    • 通过将金属薄板拉薄以形成具有封闭端的圆柱形主体10并且在垂直于圆柱体10的轴线的方向上在其开口11处切除圆筒体10的一部分而形成电池壳体。切割 通过使第一叶片保持邻接圆筒体10的内周而将配置在圆筒体10的外侧的第二叶片30相对于圆筒体的轴线移动,从而进行圆筒体10的结构。结果, 在筒状体10的切断面12上形成有与圆筒体10的侧面垂直的方向延伸的突出部13,但防止毛刺13进入电池壳体。