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    • 6. 发明授权
    • System and method of bilateral image filtering
    • 双边图像滤波的系统和方法
    • US08737735B2
    • 2014-05-27
    • US13524140
    • 2012-06-15
    • Chao TianShankar Krishnan
    • Chao TianShankar Krishnan
    • G06K9/00
    • G06T5/20G06T5/002G06T2207/20028G06T2207/20192
    • A method includes generating a first principle bilateral filtered image component from a source image. The first principle bilateral filtered image component corresponds to a second pixel value of a set, the second pixel value greater than or equal to a first pixel value. The method includes selectively updating a result pixel of a result image based on the first principle bilateral filtered image component and deallocating the first principle bilateral filtered image component. After deallocating the first principle bilateral filtered image component, a second principle bilateral filtered image component is generated from the source image. The second principle bilateral filtered image component corresponds to a third pixel value. The third pixel value is greater than the second pixel value. The third pixel value is less than or equal to a fourth pixel value. The result pixel is selectively updated based on the second principle bilateral filtered image component.
    • 一种方法包括从源图像生成第一原理双边滤波图像分量。 第一原理双边滤波图像分量对应于一组的第二像素值,第二像素值大于或等于第一像素值。 该方法包括基于第一原理双边滤波图像分量选择性地更新结果图像的结果像素并且取消分配第一原理双边滤波图像分量。 在解除分配第一原理双边滤波图像分量之后,从源图像生成第二原理双边滤波图像分量。 第二原理双边滤波图像分量对应于第三像素值。 第三像素值大于第二像素值。 第三像素值小于或等于第四像素值。 基于第二原理双边滤波图像分量选择性地更新结果像素。
    • 7. 发明申请
    • SYSTEM AND METHOD OF BILATERAL IMAGE FILTERING
    • 双向图像滤波系统与方法
    • US20130336585A1
    • 2013-12-19
    • US13524140
    • 2012-06-15
    • Chao TianShankar Krishnan
    • Chao TianShankar Krishnan
    • G06K9/40
    • G06T5/20G06T5/002G06T2207/20028G06T2207/20192
    • A method includes generating a first principle bilateral filtered image component from a source image. The first principle bilateral filtered image component corresponds to a second pixel value of a set, the second pixel value greater than or equal to a first pixel value. The method includes selectively updating a result pixel of a result image based on the first principle bilateral filtered image component and deallocating the first principle bilateral filtered image component. After deallocating the first principle bilateral filtered image component, a second principle bilateral filtered image component is generated from the source image. The second principle bilateral filtered image component corresponds to a third pixel value. The third pixel value is greater than the second pixel value. The third pixel value is less than or equal to a fourth pixel value. The result pixel is selectively updated based on the second principle bilateral filtered image component.
    • 一种方法包括从源图像生成第一原理双边滤波图像分量。 第一原理双边滤波图像分量对应于一组的第二像素值,第二像素值大于或等于第一像素值。 该方法包括基于第一原理双边滤波图像分量选择性地更新结果图像的结果像素并且取消分配第一原理双边滤波图像分量。 在解除分配第一原理双边滤波图像分量之后,从源图像生成第二原理双边滤波图像分量。 第二原理双边滤波图像分量对应于第三像素值。 第三像素值大于第二像素值。 第三像素值小于或等于第四像素值。 基于第二原理双边滤波图像分量选择性地更新结果像素。
    • 9. 发明申请
    • System and Method of Image Upsampling
    • 图像上采样的系统和方法
    • US20130121568A1
    • 2013-05-16
    • US13296417
    • 2011-11-15
    • Shankar KrishnanJames Klosowski
    • Shankar KrishnanJames Klosowski
    • G06K9/32
    • G06T3/4053
    • A method includes receiving an image having a first resolution and generating an upsampled image having a second resolution based on the image. A multi-dimensional data structure corresponding to a multi-dimensional image space is generated from the upsampled image. Each node of the data structure is determined based on a weighted sum of values of one or more pixels in the upsampled image. Each of the one or more pixels corresponds to a pixel in the received image and is located within a region of the image space having a vertex defined by the node. A filter modifies the values of the nodes and a second upsampled image is generated based on the modified values of the nodes. Each pixel of the second upsampled image not corresponding to a pixel in the received image is determined based on a weighted sum of the modified values of one or more nodes.
    • 一种方法包括接收具有第一分辨率的图像并基于该图像生成具有第二分辨率的上采样图像。 从上采样图像生成对应于多维图像空间的多维数据结构。 基于上采样图像中的一个或多个像素的值的加权和来确定数据结构的每个节点。 一个或多个像素中的每一个对应于接收到的图像中的像素,并且位于具有由该节点定义的顶点的图像空间的区域内。 滤波器修改节点的值,并且基于节点的修改值生成第二上采样图像。 基于一个或多个节点的修改值的加权和来确定不对应于接收图像中的像素的第二上采样图像的每个像素。
    • 10. 发明申请
    • Optical System Polarizer Calibration
    • 光学系统偏振器校准
    • US20120320377A1
    • 2012-12-20
    • US13164130
    • 2011-06-20
    • Johannes D. de VeerLeonid PoslavskyG. Vera ZhuangShankar Krishnan
    • Johannes D. de VeerLeonid PoslavskyG. Vera ZhuangShankar Krishnan
    • G01J4/00
    • G01N21/21G01J3/504G01N21/274
    • A method to calibrate a polarizer in polarized optical system at any angle of incidence, by decoupling the calibration from a polarization effect of the system, by providing a calibration apparatus that includes a substrate having a polarizer disposed on a surface thereof, with an indicator on the substrate for indicating a polarization orientation of the polarizer, loading the calibration apparatus in the polarized optical system with the indicator in a desired position, determining an initial angle between the polarization orientation and a reference of the polarized optical system, acquiring spectra using the polarized optical system at a plurality of known angles between the polarization orientation and the reference of the polarized optical system, using the spectra to plot a curve indicating an angle of the polarizer in the polarized optical system, and when the angle of the polarizer is outside of a desired range, adjusting the angle of the polarizer, and repeating the steps of acquiring the spectra, and plotting a curve indicating the angle of the polarizer.
    • 一种通过提供校准装置来校准偏振光学系统中任何入射角的偏振器的方法,通过提供校准装置,该校准装置包括具有设置在其表面上的偏振器的衬底, 用于指示偏振器的偏振取向的衬底,将校准装置装载在具有指示器的期望位置的偏振光学系统中,确定极化取向和偏振光学系统的基准之间的初始角度,使用偏振光 光学系统以偏振方向和偏振光学系统的基准之间的多个已知角度,使用光谱绘制指示偏振器在偏振光学系统中的角度的曲线,以及当偏振器的角度在 期望的范围,调节偏振器的角度,并重复以下步骤 获取光谱,并绘制一个指示偏振片角度的曲线。