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    • 1. 发明授权
    • Image processing apparatus and image sensing apparatus
    • 图像处理装置和图像感测装置
    • US08526761B2
    • 2013-09-03
    • US12972054
    • 2010-12-17
    • Kazuhiro KojimaHaruo Hatanaka
    • Kazuhiro KojimaHaruo Hatanaka
    • G06K9/20
    • G06K9/00228G06T5/003G06T5/20G06T2207/10004G06T2207/30201
    • An image processing unit includes a second-taken image generation unit which performs a blurring process on a first taken image including a plurality of small areas so as to generate a second taken image, a focus degree deriving unit which derives a focus degree of each small area, and a combination process unit which combines each small area of the first taken image with each second small area of the second taken image corresponding to each small area of the first taken image. The combination process unit sets a mixing ratio of the second taken image in the combination to a larger value as a focus degree of each small area derived by the focus degree deriving unit is smaller. The second-taken image generation unit includes a face area detection unit which detects a face image area from the first taken image, and a blurring process unit which performs the blurring process on the first taken image on the basis of the detected face image area so as to generate the second taken image.
    • 图像处理单元包括:二次图像生成单元,对包括多个小区域的第一拍摄图像进行模糊处理,以生成第二拍摄图像;焦点导出单元,其导出每个小的焦点度 区域和组合处理单元,其将第一拍摄图像的每个小区域与对应于第一拍摄图像的每个小区域的第二拍摄图像的每个第二小区域组合。 组合处理单元将组合中的第二拍摄图像的混合比设定为较大值,因为由焦点度导出单元导出的每个小区域的焦点度较小。 第二拍摄图像生成单元包括:脸部区域检测单元,其从第一拍摄图像检测面部图像区域;以及模糊处理单元,其基于检测到的脸部图像区域对第一拍摄图像执行模糊处理,从而 以产生第二拍摄图像。
    • 3. 发明授权
    • Image combining device and imaging apparatus
    • 图像组合装置和成像装置
    • US07956897B2
    • 2011-06-07
    • US11848887
    • 2007-08-31
    • Haruo HatanakaTakashi Iida
    • Haruo HatanakaTakashi Iida
    • H04N5/228
    • H04N5/23248G06T5/003G06T5/50G06T7/30G06T2207/20201H04N5/23232H04N5/23254H04N5/23267H04N5/23277
    • A plurality of divided exposure images (first to fourth images) are obtained by dividing a normal exposure time. By an image matching method, a motion detection circuit calculates a plurality of cumulative total correlation values between different divided exposure images, and searches the plurality of cumulative total correlation values for the smallest cumulative total correlation value, thereby calculating a motion vector between the different divided exposure images. In addition, based on the level of the smallest cumulative total correlation value, the level of reliability B[i] indicating the accuracy of the motion vector is calculated. An image combining circuit uses the level of reliability B[i] as a mixture proportion. The image combining circuit positions the divided exposure images based on the motion vector, and combines the divided exposure images together one on top of another in mixture proportions (B[i]), so as to form one still image that suffers less from camera shake.
    • 通过划分正常曝光时间来获得多个分割曝光图像(第一至第四图像)。 通过图像匹配方法,运动检测电路计算不同分割曝光图像之间的多个累积总相关值,并且搜索最小累积总相关值的多个累积总相关值,从而计算不同分割的曝光图像之间的运动矢量 曝光图像。 此外,基于最小累积总相关值的电平,计算表示运动矢量的精度的可靠度B [i]的电平。 图像组合电路使用可靠度B [i]作为混合比例的水平。 图像合成电路基于运动矢量定位分割的曝光图像,并且将分割的曝光图像以混合比例(B [i])组合在一起,从而形成一个比相机震动更少的静止图像 。
    • 4. 发明授权
    • Unintentional hand movement canceling device and imaging apparatus
    • 无意识的手动消除装置和成像装置
    • US07633525B2
    • 2009-12-15
    • US12487113
    • 2009-06-18
    • Haruo Hatanaka
    • Haruo Hatanaka
    • H04N5/228
    • H04N5/23261H04N5/23248H04N5/23254H04N5/23258H04N5/23267
    • Provided is an unintentional hand movement canceling device, comprising: swing detecting means detecting a swing of an image; and a correction quantity generating means generating a correction quantity to calculate a correction position based on a swing quantity detected by the swing detection means, a damping coefficient of a swing quantity for controlling a characteristic of a non-corrected residue percent at a swing frequency and a damping center for controlling a centering velocity at which a correction position is caused to move to an initial position before correction, the correction quantity having a variable characteristic of a non-corrected residue percent at a frequency of the swing and a variable centering velocity at which a correction position is caused to move to an initial position before correction, wherein the correction quantity generating means includes means updating the damping center based on a preset damping coefficient of the damping center.
    • 提供一种无意识的手动消除装置,包括:检测图像的摆动的摆动检测装置; 以及校正量产生装置,基于由所述摆动检测装置检测到的摆动量,产生校正量以计算校正位置,用于控制在摆动频率下的非校正残差百分比的特性的摆动量的阻尼系数;以及 阻尼中心,用于控制使校正位置移动到校正前的初始位置的定心速度,所述校正量具有在所述摆动频率下的非校正残差百分比的可变特性和在所述摆动时的可变定心速度 使得校正位置在校正之前移动到初始位置,其中校正量产生装置包括基于阻尼中心的预设阻尼系数更新阻尼中心的装置。
    • 7. 发明授权
    • Image correction apparatus, method thereof and electronics device
    • 图像校正装置及其电子装置
    • US07893964B2
    • 2011-02-22
    • US11949168
    • 2007-12-03
    • Haruo HatanakaHideto FujitaShinpei Fukumoto
    • Haruo HatanakaHideto FujitaShinpei Fukumoto
    • H04N5/228
    • G03B7/02G06T5/003G06T2207/20092G06T2207/20201H04N5/23248H04N5/23258
    • In an imaging device that generates a correction image by performing, on the basis of shake information on a target image, shake correction processing on the target image when a correction instruction is issued by a user while the target image is displayed on a display unit, and that displays the corrected image on the display unit, preceding correction performs the shake correction processing before the issuing of the correction instruction. To suppress an increase in power consumption, due to the preceding correction, however, the preceding correction is not performed when the amount of camera shake of a target image is determined to be too small by referring to the amount of shake of a target image. Moreover, the frequency of the issuing of correction instructions for a target image in the past is referenced, and in a case where the frequency is low, the preceding correction is not performed.
    • 在通过在将目标图像显示在显示单元上时由用户发出校正指示的情况下,基于目标图像上的抖动信息执行对目标图像的抖动校正处理来生成校正图像的成像装置中, 并且在显示单元上显示校正的图像,在校正指令的发出之前,前一次校正执行抖动校正处理。 然而,为了抑制由于前面的校正引起的功率消耗的增加,当通过参照目标图像的抖动量将目标图像的相机抖动量确定为太小时,不执行前面的校正。 此外,参照了过去对目标图像发出校正指令的频率,在频率低的情况下,不进行前述的校正。
    • 8. 发明申请
    • Hand shake blur detecting apparatus
    • 手抖模糊检测装置
    • US20070065126A1
    • 2007-03-22
    • US11523660
    • 2006-09-20
    • Haruo HatanakaShinpei Fukumoto
    • Haruo HatanakaShinpei Fukumoto
    • G03B17/00
    • G03B5/00G03B17/00
    • A hand shake blur detecting apparatus for detecting hand shake blur of an imaging device based on an output signal of a hand shake blur sensor for detecting the hand shake blur of the imaging device is provided, the hand shake blur detecting apparatus including a high pass filter calculating means for removing low frequency component from the output signal of the hand shake blur sensor; an inverse high pass filter calculating means for performing on the output signal of the high pass filter calculating means, a filter calculation of an inverse transfer function of the high pass filter; an offset value calculating means for calculating the offset value based on the output data of the inverse high pass filter calculating means; and an offset value subtracting means for subtracting the offset value calculated by the offset calculating means from the output data of the inverse high pass filter calculating means.
    • 提供了一种用于基于用于检测成像装置的手抖动模糊的手抖动模糊传感器的输出信号来检测成像装置的手抖动模糊的手抖模糊检测装置,所述手抖模糊检测装置包括高通滤波器 计算装置,用于从手抖动模糊传感器的输出信号中去除低频分量; 反相高通滤波器计算装置,用于对高通滤波器计算装置的输出信号执行高通滤波器的反向传递函数的滤波器计算; 偏移值计算装置,用于根据反相高通滤波器计算装置的输出数据计算偏移值; 以及偏移值减法装置,用于从反相高通滤波器计算装置的输出数据中减去由偏移计算装置计算的偏移值。