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    • 3. 发明授权
    • Image processing apparatus and method, and a recording medium storing a program for executing the image processing method
    • 图像处理装置和方法,以及存储用于执行图像处理方法的程序的记录介质
    • US08358869B2
    • 2013-01-22
    • US12533102
    • 2009-07-31
    • Soon-geun Jang
    • Soon-geun Jang
    • G06K9/40
    • G06T5/002G06T2207/20021
    • An image processing apparatus and method for quickly and effectively reducing noise in images processed by apparatuses having a low hardware specification, and a program for executing the image processing method. The image processing apparatus includes an image dividing unit for obtaining a plurality of first sub-image data items corresponding to a plurality of first sub-images that are obtained by dividing a first image corresponding to first image data, a noise reducing unit for obtaining a plurality of second sub-image data items corresponding to a plurality of second sub-images by reducing noise in the first sub-images from the first sub-image data items that are obtained by the image dividing unit, and an image synthesizing unit for obtaining second image data corresponding to a second image corresponding to the plurality of second sub-images from the plurality of second sub-image data items that are obtained by the noise reducing unit.
    • 一种用于快速有效地降低由具有低硬件规格的设备处理的图像中的噪声的图像处理装置和方法,以及用于执行图像处理方法的程序。 图像处理装置包括:图像分割单元,用于获得与通过划分与第一图像数据相对应的第一图像获得的多个第一子图像相对应的多个第一子图像数据项;噪声降低单元,用于获得 通过从由图像分割单元获得的第一子图像数据项中减少第一子图像中的噪声而对应于多个第二子图像的多个第二子图像数据项,以及图像合成单元,用于获得 对应于由所述噪声降低单元获得的所述多个第二子图像数据项中的与所述多个第二子图像相对应的第二图像的第二图像数据。
    • 6. 发明申请
    • IMAGE PROCESSING METHOD AND IMAGE PROCESSING APPARATUS
    • 图像处理方法和图像处理装置
    • US20120038797A1
    • 2012-02-16
    • US13034764
    • 2011-02-25
    • Soon-geun JangTae-hong MinRae-hong ParkHwan-soon Sung
    • Soon-geun JangTae-hong MinRae-hong ParkHwan-soon Sung
    • H04N5/217
    • H04N5/2355G06T5/008G06T5/50G06T2207/10144
    • An image processing apparatus and an image processing method, the method including: providing one or more low dynamic range images having different exposure levels; classifying each of the one of more low dynamic range images as a saturation region, an under-saturation region, and a non-saturation region with respect to an intensity value; generating feature maps indicating a similarity between patterns of the non-saturation regions; generating final feature maps converting pixels included in the feature maps into moving pixels and non-moving pixels; defining moving regions and non-moving regions included in the one or more low dynamic range images; removing noise from the moving regions and the non-moving regions by using a first noise reduction filter for the moving regions and a second noise reduction filter for the non-moving regions; and generating a radiance map corresponding to the one or more low dynamic range images.
    • 一种图像处理装置和图像处理方法,所述方法包括:提供具有不同曝光水平的一个或多个低动态范围图像; 将更低的动态范围图像中的每一个分类为饱和区域,欠饱和区域和相对于强度值的非饱和区域; 生成指示非饱和区域的图案之间的相似性的特征图; 生成将特征图中包括的像素转换为移动像素和非移动像素的最终特征图; 定义包括在所述一个或多个低动态范围图像中的移动区域和非移动区域; 通过使用用于移动区域的第一噪声降低滤波器和用于非移动区域的第二降噪滤波器来从移动区域和非移动区域去除噪声; 以及生成对应于所述一个或多个低动态范围图像的辐射图。
    • 8. 发明授权
    • Apparatus for capturing images, method of controlling exposure in the apparatus, and computer readable recording medium storing program
    • 用于拍摄图像的装置,控制装置中曝光的方法以及存储程序的计算机可读记录介质
    • US07945155B2
    • 2011-05-17
    • US12380433
    • 2009-02-27
    • Soon-geun JangJin-pyo GwakEun-sun Ahn
    • Soon-geun JangJin-pyo GwakEun-sun Ahn
    • G03B7/00H04N5/235
    • G03B7/087
    • A method of controlling exposure under low brightness conditions, comprising calculating an automatic exposure time such that an exposure time is substantially in inverse proportion to the brightness of a subject; when the automatic exposure time is smaller than a first exposure time value, setting a control exposure time as the automatic exposure time; when the automatic exposure time is greater than or equal to the first exposure time and smaller than or equal to a second exposure time, setting the control exposure time as the first exposure time; when the automatic exposure time is greater than the second exposure time, setting the control exposure time to be substantially in proportion to the automatic exposure time such that the control exposure time is smaller than the automatic exposure time by predetermined steps; and increasing sensitivity according to a difference between the automatic exposure time and the control exposure time.
    • 一种在低亮度条件下控制曝光的方法,包括计算曝光时间与被摄体的亮度基本成反比的自动曝光时间; 当自动曝光时间小于第一曝光时间值时,将控制曝光时间设置为自动曝光时间; 当自动曝光时间大于或等于第一曝光时间并小于或等于第二曝光时间时,将控制曝光时间设置为第一曝光时间; 当自动曝光时间大于第二曝光时间时,将控制曝光时间设定为与自动曝光时间成正比地成比例,使得控制曝光时间小于自动曝光时间的预定步骤; 并根据自动曝光时间和控制曝光时间之间的差异增加灵敏度。
    • 10. 发明申请
    • IMAGE PROCESSING APPARATUS AND METHOD FOR TRACKING A LOCATION OF A TARGET SUBJECT
    • 用于跟踪目标物体位置的图像处理装置和方法
    • US20100128929A1
    • 2010-05-27
    • US12622620
    • 2009-11-20
    • Soon geun JangEun-sun Ahn
    • Soon geun JangEun-sun Ahn
    • G06K9/00
    • G06T7/248G06T2207/10016
    • A digital image processing apparatus has a tracking function for tracking a location variation of a set tracking area on a plurality of frame images. The digital image processing apparatus includes a similarity calculation unit that calculates a similarity by varying a location of a template on one frame image. The similarity calculation unit calculates a second direction similarity by fixing a first direction location of the template in a first direction on the one frame image and by varying a second direction location of the template in a second direction which is perpendicular to the first direction, and then calculates a first direction similarity by fixing the second direction location of the template at a location where the second direction similarity is the highest and by varying the first direction location of the template in the first direction on the one frame image.
    • 数字图像处理装置具有用于跟踪多个帧图像上的设置跟踪区域的位置变化的跟踪功能。 数字图像处理装置包括:相似度计算单元,其通过改变一帧图像上的模板的位置来计算相似度。 相似度计算单元通过将模板的第一方向位置固定在一帧图像上的第一方向上并通过沿与第一方向垂直的第二方向改变模板的第二方向位置来计算第二方向相似度,以及 然后通过将模板的第二方向位置固定在第二方向相似度最高的位置,并通过在一帧图像上改变模板在第一方向上的第一方向位置来计算第一方向相似度。