会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 82. 发明授权
    • Brightness correction apparatus for moving images, and method and program for controlling same
    • 用于运动图像的亮度校正装置,以及用于控制它的方法和程序
    • US07970271B2
    • 2011-06-28
    • US11709173
    • 2007-02-22
    • Masahiko Sugimoto
    • Masahiko Sugimoto
    • G03B17/00G03B7/00
    • H04N5/235G03B7/08H04N5/2351
    • In order to perform a brightness correction that is suited to a face image in a moving image, a still-image brightness correction parameter for performing a brightness correction suited to a subject image is calculated from a face image in the subject image and the overall subject image. A moving-image brightness correction parameter is calculated using the calculated still-image brightness correction parameter and a moving-image brightness correction parameter that has been calculated in a subject image of a previous frame. By using the moving-image brightness correction parameter calculated, the brightness of a subject image obtained subsequent to the first-mentioned subject image is corrected.
    • 为了执行适合于运动图像中的面部图像的亮度校正,根据被摄体图像和整体对象中的面部图像计算用于执行适合于被摄体图像的亮度校正的静止图像亮度校正参数 图片。 使用计算出的静止图像亮度校正参数和已经在前一帧的被摄体图像中计算的运动图像亮度校正参数来计算运动图像亮度校正参数。 通过使用计算出的运动图像亮度校正参数,校正在第一个被摄体图像之后获得的被摄体图像的亮度。
    • 84. 发明授权
    • Exhaust device for a diesel engine
    • 柴油发动机排气装置
    • US07814746B2
    • 2010-10-19
    • US11678656
    • 2007-02-26
    • Masahiro AketaShuichi YamadaToshio NakahiraMasahiko SugimotoKatsushi Inoue
    • Masahiro AketaShuichi YamadaToshio NakahiraMasahiko SugimotoKatsushi Inoue
    • F01N3/00F01N3/10B01D50/00
    • F01N3/025F01N2610/03
    • An exhaust device for a diesel engine supplies liquid fuel (6) from a supply source (5) of the liquid fuel (6) to a gas generator (3) which converts the liquid fuel (6) to flammable gas (7) and from which a flammable-gas supply passage (8) is conducted, the flammable-gas supply passage (8) having a flammable-gas outlet (9) communicated with an exhaust-gas route (1) upstream of a diesel-particulate-filter (2), the flammable gas (7) flowed out of the flammable-gas outlet (9) being burnt in exhaust gas (10) to generate combustion heat which can burn fine particles of the exhaust gas (10) remaining at the filter (2). In this exhaust device for a diesel engine, a case (11) for containing the filter (2) accommodates at least part of the gas generator (3).
    • 用于柴油发动机的排气装置将液体燃料(6)从液体燃料(6)的供应源(5)供应到气体发生器(3),其将液体燃料(6)转化为可燃气体(7) 所述可燃性气体供给通路(8)具有与所述排气通路(1)连通的可燃性气体出口(9)的可燃性气体供给通路(8),所述排气路径(1)位于柴油微粒过滤器 如图2所示,可燃气体(7)从排气(10)中燃烧的可燃气体出口(9)流出,以产生燃烧热量,其可燃烧留在过滤器(2)处的废气(10)的细颗粒 )。 在该柴油发动机用排气装置中,容纳过滤器(2)的箱体(11)容纳至少一部分气体发生器(3)。
    • 85. 发明授权
    • Target-image position detecting apparatus, method and program for controlling said apparatus
    • 目标图像位置检测装置,用于控制所述装置的方法和程序
    • US07747157B2
    • 2010-06-29
    • US11520832
    • 2006-09-14
    • Masahiko Sugimoto
    • Masahiko Sugimoto
    • G03B3/00G03B7/08
    • G06K9/00261G01S3/7864H04N5/232H04N5/23212H04N5/23219H04N5/2351
    • A face-image area is decided with comparatively good accuracy. An (N−1)th frame of a subject image α1 and an Nth frame of a subject image α2 are obtained by sensing the image of a subject successively. Face-image detection processing is applied to the frames of the subject images α1 and α2 to detect face-image areas C1, C2 and C3. The face-image area C2 is construed to be linked to the face-image area C1, which is the corresponding face-image area. Since a face-image area that corresponds to the face-image area C3 does not exist, the face-image area C3 is construed as not being linked. The linked face-image area C2 in the Nth frame of the subject image α2 is decided upon as a face-image area. Thus, face areas can be decided with comparatively good accuracy.
    • 以比较好的精度决定面部图像区域。 通过连续地感测被摄体图像来获得被摄体图像α1的第(N-1)帧和被摄体图像α2的第N帧。 将面部图像检测处理应用于被摄体图像α1,α2的帧,以检测脸部图像区域C1,C2和C3。 面部图像区域C2被解释为链接到作为相应的面部图像区域的面部图像区域C1。 由于与面部图像区域C3对应的面部图像区域不存在,所以面部图像区域C3被解释为不被连接。 被摄体图像α2的第N帧中的连接的面部图像区域C2被确定为面部图像区域。 因此,可以以比较好的精度来决定面部区域。
    • 86. 发明申请
    • Imaging Apparatus and Imaging Method
    • 成像设备和成像方法
    • US20100026836A1
    • 2010-02-04
    • US12511899
    • 2009-07-29
    • Masahiko Sugimoto
    • Masahiko Sugimoto
    • H04N9/73G06K9/46
    • H04N9/735G06K9/00697H04N5/232H04N5/23212H04N5/23219H04N5/23245H04N5/235
    • It is an object of the present invention to provide an imaging apparatus and an imaging method which enable various functions using face detection to be individually controlled in accordance with scene recognition results and which achieve more favorable imaging and image processing. To achieve the object, in an aspect of the present invention, information on a photographic scene is acquired to recognize the scene and to detect whether or not a face exists in the photographic scene, and various controls are performed based on the scene recognition result and the face detection result. That is, when performing various controls using face detection such as face frame display, face AE, face AF, face AWB, face tonal correction, and the like, it is now possible to individually control how such controls are to be performed based on a scene recognition result and achieve more favorable imaging and image processing in accordance with the scenes.
    • 本发明的一个目的是提供一种成像装置和成像方法,其能够根据场景识别结果单独地控制使用脸部检测的各种功能,并且实现更有利的成像和图像处理。 为了实现该目的,在本发明的一个方面中,获取关于摄影场景的信息以识别场景并检测摄影场景中是否存在脸部,并且基于场景识别结果执行各种控制,并且 脸部检测结果。 也就是说,当使用诸如面部画面显示,脸部AE,面部AF,面部AWB,面部色调校正等的脸部检测进行各种控制时,现在可以单独控制如何基于 场景识别结果,并根据场景实现更好的成像和图像处理。
    • 88. 发明授权
    • Image search apparatus for images to be detected, and method of controlling same
    • 要检测的图像的图像搜索装置及其控制方法
    • US07561718B2
    • 2009-07-14
    • US11266220
    • 2005-11-04
    • Masahiko Sugimoto
    • Masahiko Sugimoto
    • G06K9/00
    • G06K9/00597
    • If a target-image portion to be detected is detected anew, an evaluation value of this target-image portion is calculated. If the target-image portion is detected anew, it is determined whether the number of target-image portions has exceeded n owing to such detection. If, in a case where n has been exceeded, information concerning a target-image portion having an evaluation value smaller than that of the newly detected target-image portion has been stored, then the information having this evaluation value is deleted from a list and the information concerning the newly detected target-image portion is stored in the list. Since the number of items of information stored in the list will not exceed n, it is possible to avoid a malfunction that can occur if processing is executed following storage of a large number of items of information.
    • 如果重新检测到要检测的目标图像部分,则计算该目标图像部分的评估值。 如果再次检测到目标图像部分,则由于这种检测,确定目标图像部分的数量是否已经超过n。 如果在超过n的情况下,已经存储了关于具有小于新检测到的目标图像部分的评估值的评估值的目标图像部分的信息,则从列表中删除具有该评估值的信息, 关于新检测到的目标图像部分的信息被存储在列表中。 由于存储在列表中的信息项数不超过n,所以可以避免在存储大量信息项之后执行处理时可能发生的故障。
    • 89. 发明授权
    • Digital camera and method of controlling same
    • 数码相机及其控制方法
    • US07397955B2
    • 2008-07-08
    • US10841510
    • 2004-05-10
    • Masahiko Sugimoto
    • Masahiko Sugimoto
    • G06K9/62
    • H04N5/23245G06K9/00228H04N1/00132H04N1/00183H04N1/00408H04N1/0044H04N5/232H04N2101/00
    • Whether a portrait photography mode has been set is determined. A first threshold value is set when the portrait photography mode has been set and a second threshold value that is smaller than the first threshold value is set when the portrait photography mode has not been set. A cross-correlation coefficient between the image of the subject and a template image is calculated. The calculated coefficient and the set threshold value are compared and the position of the image of a face is detected in the image of the subject. When the portrait photography mode has been set, it can be construed that the subject contains a person and therefore the position of the face image can be detected comparatively accurately by increasing the threshold value.
    • 确定是否设置了人像摄影模式。 当纵向拍摄模式被设置并且当未设置人像摄影模式时设置小于第一阈值的第二阈值时,设置第一阈值。 计算对象的图像与模板图像之间的互相关系数。 比较计算出的系数和设定的阈值,并在对象的图像中检测脸部的图像的位置。 当已经设置人像摄影模式时,可以认为对象包含人物,因此通过增加阈值可以比较准确地检测脸部图像的位置。