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
    • 4. 发明授权
    • Method and system for performing resolution expansion with high quality edge enhancement
    • 用高性能边缘增强进行分辨率扩展的方法和系统
    • US08842938B2
    • 2014-09-23
    • US13534260
    • 2012-06-27
    • Xing LiDavid MetcalfeBarbara Lynn Farrell
    • Xing LiDavid MetcalfeBarbara Lynn Farrell
    • G06K9/32
    • G06T3/4053G06T5/003G06T2207/20192H04N1/4092
    • Methods and systems for performing resolution expansion with high quality edge enhancement capability utilizing an edge detector and a color estimator. An edge tag with respect to an input image can be detected via an edge detector and an edge detection approach. A resolution expansion can be separately applied to the edge tag and a binary output generated by other processing functions. Multiple output lines corresponding to the input image from the color estimator with different threshold array values for an edge pixel can be generated by a halftoning module. A binary domain resolution expansion can be applied for a non-edge pixel. A final output for each pixel can be selected from a resolution expanded result and/or from the result of the halftoning for the edge based on the edge tag with respect to that pixel.
    • 利用边缘检测器和颜色估计器,利用高质量边缘增强能力执行分辨率扩展的方法和系统。 可以通过边缘检测器和边缘检测方法检测相对于输入图像的边缘标签。 分辨率扩展可以单独应用于边缘标签和由其他处理功能生成的二进制输出。 通过半色调模块可以生成与来自颜色估计器的输入图像对应的多个输出行,其具有用于边缘像素的不同阈值阵列值。 可以对非边缘像素应用二进制域分辨率扩展。 可以从分辨率扩展结果和/或根据相对于该像素的边缘标签对于边缘的半色调的结果来选择每个像素的最终输出。
    • 5. 发明授权
    • Determining an orientation direction of a color edge at a pixel location in a color image
    • 确定彩色图像中的像素位置处的颜色边缘的取向方向
    • US08787653B2
    • 2014-07-22
    • US13426203
    • 2012-03-21
    • Xing LiMeng YaoBarbara L. Farrell
    • Xing LiMeng YaoBarbara L. Farrell
    • G06K9/00
    • H04N1/58G06T1/20
    • What is disclosed is a system and method for determining an orientation direction of a color edge at a given pixel location in a binary color image. The orientation direction of the color edge is determined from eight pixel counts with each pixel count being a total number of pixels in each of eight regions of a window centered about a candidate pixel which resides along the color edge. The eight regions are associated with 8 compass points. The orientation of the edge is determined by a 1st, 2nd and 3rd tier control bits which are based upon the pixel counts of each region. The 1st, 2nd and 3rd tier control bits collectively form a 3-bit word. The 3-bit word defines the orientation direction. The teachings hereof provide an efficient way of performing binary edge orientation detection by making uses of intermediate results to simultaneously encode the edge orientation.
    • 所公开的是用于确定二值彩色图像中的给定像素位置处的颜色边缘的取向方向的系统和方法。 颜色边缘的取向方向由八个像素计数确定,每个像素数量是围绕沿着颜色边缘驻留的候选像素的中心的窗口的八个区域的每个区域中的像素总数。 八个区域与8个罗盘点相关联。 边缘的方向由基于每个区域的像素计数的第一,第二和第三层控制位确定。 第1,第2和第3层控制位一起形成3位字。 3位字定义方向。 本发明的教导提供了一种通过利用中间结果同时编码边缘取向来执行二进制边缘取向检测的有效方法。
    • 6. 发明授权
    • Isolated hole detection and growth
    • 隔离孔检测和生长
    • US08643905B1
    • 2014-02-04
    • US13547875
    • 2012-07-12
    • Amal MalikXing LiZhenhuan Wen
    • Amal MalikXing LiZhenhuan Wen
    • H04N1/40G06T5/00
    • G06K9/44G06K2209/01H04N1/40037H04N1/4092
    • The present disclosure relates to a method and system for processing isolated holes in an image to be printed or displayed. The method includes generating a random number lying in a finite range of numbers, determining whether a target pixel is to be turned off and enabled for printing as a hole, determining a sum of pixels surrounding a target pixel in a plurality of pixels in a scanline of the image, the target pixel corresponding to an isolated hole in an input image, that are in an on state, the on state defined by a higher binary logic level relative to a binary logic level corresponding to a turned off pixel, determining a numerical value stored in a lookup table in a memory unit coupled to the processor using the determined number of pixels that are in the turned on state surrounding the target pixel.
    • 本公开涉及用于处理要打印或显示的图像中的隔离孔的方法和系统。 该方法包括生成位于有限数量范围内的随机数,确定目标像素是否被关闭并且能够打印为孔,确定扫描线中的多个像素中的目标像素周围的像素之和 的图像,对应于输入图像中的孤立孔的目标像素处于导通状态,由相对于对应于关闭像素的二进制逻辑电平的较高二进制逻辑电平定义的导通状态,确定数字 存储在与处理器耦合的存储器单元中的查找表中的值存储在目标像素周围处于导通状态的确定数量的像素。
    • 7. 发明申请
    • ISOLATED HOLE DETECTION AND GROWTH
    • 隔离孔检测和增长
    • US20140016146A1
    • 2014-01-16
    • US13547875
    • 2012-07-12
    • Amal MALIKXing LiZhenhuan Wen
    • Amal MALIKXing LiZhenhuan Wen
    • G06F15/00
    • G06K9/44G06K2209/01H04N1/40037H04N1/4092
    • The present disclosure relates to a method and system for processing isolated holes in an image to be printed or displayed. The method includes generating a random number lying in a finite range of numbers, determining whether a target pixel is to be turned off and enabled for printing as a hole, determining a sum of pixels surrounding a target pixel in a plurality of pixels in a scanline of the image, the target pixel corresponding to an isolated hole in an input image, that are in an on state, the on state defined by a higher binary logic level relative to a binary logic level corresponding to a turned off pixel, determining a numerical value stored in a lookup table in a memory unit coupled to the processor using the determined number of pixels that are in the turned on state surrounding the target pixel.
    • 本公开涉及一种用于处理要打印或显示的图像中的隔离孔的方法和系统。 该方法包括生成位于有限数量范围内的随机数,确定目标像素是否被关闭并且能够打印为孔,确定扫描线中的多个像素中的目标像素周围的像素之和 的图像,对应于输入图像中的孤立孔的目标像素处于导通状态,由相对于对应于关闭像素的二进制逻辑电平的较高二进制逻辑电平定义的导通状态,确定数字 存储在与处理器耦合的存储器单元中的查找表中的值存储在目标像素周围处于导通状态的确定数量的像素。
    • 8. 发明申请
    • METHOD AND SYSTEM FOR PERFORMING RESOLUTION EXPANSION WITH HIGH QUALITY EDGE ENHANCEMENT
    • 用于执行高质量边缘增强的分辨率扩展的方法和系统
    • US20140002459A1
    • 2014-01-02
    • US13534260
    • 2012-06-27
    • Xing LiDavid MetcalfeBarbara Lynn Farrell
    • Xing LiDavid MetcalfeBarbara Lynn Farrell
    • G06T17/00
    • G06T3/4053G06T5/003G06T2207/20192H04N1/4092
    • Methods and systems for performing resolution expansion with high quality edge enhancement capability utilizing an edge detector and a color estimator. An edge tag with respect to an input image can be detected via an edge detector and an edge detection approach. A resolution expansion can be separately applied to the edge tag and a binary output generated by other processing functions. Multiple output lines corresponding to the input image from the color estimator with different threshold array values for an edge pixel can be generated by a halftoning module. A binary domain resolution expansion can be applied for a non-edge pixel. A final output for each pixel can be selected from a resolution expanded result and/or from the result of the halftoning for the edge based on the edge tag with respect to that pixel.
    • 利用边缘检测器和颜色估计器,利用高质量边缘增强能力执行分辨率扩展的方法和系统。 可以通过边缘检测器和边缘检测方法检测相对于输入图像的边缘标签。 分辨率扩展可以单独应用于边缘标签和由其他处理功能生成的二进制输出。 通过半色调模块可以生成与来自颜色估计器的输入图像对应的多个输出行,其具有用于边缘像素的不同阈值阵列值。 可以对非边缘像素应用二进制域分辨率扩展。 可以从分辨率扩展结果和/或根据相对于该像素的边缘标签对于边缘的半色调的结果来选择每个像素的最终输出。
    • 9. 发明授权
    • Thin line detection and enhancement for electronic images having different resolutions
    • 具有不同分辨率的电子图像的细线检测和增强
    • US08611671B2
    • 2013-12-17
    • US12841663
    • 2010-07-22
    • Meng YaoXing Li
    • Meng YaoXing Li
    • G06K9/46
    • H04N1/4092G06K15/1874
    • A methodology for thin line detection and enhancement in electronic images is disclosed. The methodology includes associating an electronic image with at least one basic context window that is less than the size of the electronic image based on the input image resolution of the electronic image; detecting one or more predefined patterns which correspond to thin lines in the electronic image using the at least one basic context window; excluding patterns for the one or more detected patterns which are halftone patterns; and adding at least one pixel to the electronic image based on at least one of the remaining patterns so as to enhance thin line features in the electronic image. In some implementation, the methodology may be configured to handle electronic images having different resolutions. A system for thin line detection and enhancement in electronic images having different resolutions is also disclosed.
    • 公开了一种用于电子图像中细线检测和增强的方法。 该方法包括基于电子图像的输入图像分辨率将电子图像与至少一个小于电子图像大小的基本上下文窗口相关联; 使用所述至少一个基本上下文窗口来检测对应于所述电子图像中的细线的一个或多个预定义模式; 排除作为半色调图案的一个或多个检测图案的图案; 以及基于所述剩余图案中的至少一个向所述电子图像添加至少一个像素,以便增强所述电子图像中的细线特征。 在一些实现中,该方法可以被配置为处理具有不同分辨率的电子图像。 还公开了一种用于具有不同分辨率的电子图像中的细线检测和增强的系统。
    • 10. 发明申请
    • CARD EDGE CONNECTOR
    • 卡边缘连接器
    • US20130059455A1
    • 2013-03-07
    • US13602209
    • 2012-09-03
    • ZHUANG-XING LIXUE-HAI SHENXUE-WU BU
    • ZHUANG-XING LIXUE-HAI SHENXUE-WU BU
    • H01R13/62
    • H01R12/7005
    • A card edge connector 100 includes an insulative housing 1, a plurality of contacts 2 and at least an ejector 3 pivoted on the housing 1. The housing 1 has an longitudinal central slot 12 and at least a towers portion 14 located at one ends of thereof. The ejector 3 comprise a pair of elastic walls 32, a slit formed between the elastic walls 32. the elastic wall 32 comprise a pair of first elastic walls 321 and a pair of second elastic walls 322 extending downwardly from the first elastic walls 321 respectively, the second elastic walls 322 comprises a first connecting wall 3221 and a second connecting wall 3222 extending downwardly from the first connecting wall 3221, a thickness of the first connecting wall 3221 is equal to a sum of the thickness of the first elastic wall 321 and the second connecting wall 3222.
    • 卡边缘连接器100包括绝缘壳体1,多个触点2和至少在壳体1上枢转的喷射器3.壳体1具有纵向中心狭槽12和位于其一端的至少塔部14 。 喷射器3包括一对弹性壁32,形成在弹性壁32之间的狭缝。弹性壁32包括一对第一弹性壁321和分别从第一弹性壁321向下延伸的一对第二弹性壁322, 第二弹性壁322包括从第一连接壁3221向下延伸的第一连接壁3221和第二连接壁3222,第一连接壁3221的厚度等于第一弹性壁321的厚度和 第二连接壁3222。