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    • 1. 发明授权
    • Dynamic adjustment of raster image processing performance based on colors seen within several runs
    • 基于几个运行中看到的颜色,动态调整光栅图像处理性能
    • US07630098B2
    • 2009-12-08
    • US11519068
    • 2006-09-12
    • Ramesh NagarajanFritz EbnerZhenhuan Wen
    • Ramesh NagarajanFritz EbnerZhenhuan Wen
    • H04N1/52
    • H04N1/52H04N1/644
    • The presently disclosed embodiments are directed to methods and systems for improving the performance of an image processor color to color tile transformation by caching color tiles most recently calculated. A page of a print job is received. One or more color tiles based on colors found in a previous print job are pre-calculated and stored in a memory. A color present in the page is read. The color is compared to one or more pre-calculated color tiles. If the color does not match a pre-calculated color tile, a new color tile for the color is calculated, a pre-calculated color tile is removed from the memory, the new color tile is added to the memory, and the new color tile is used to print the page. If the color does match a pre-calculated color tile stored in the memory, the pre-calculated color tile is used to print the page.
    • 目前公开的实施例涉及用于通过缓存最近计算出的颜色瓦来改善图像处理器颜色到彩色瓦片变换的性能的方法和系统。 接收到打印作业的页面。 基于在先前打印作业中找到的颜色的一个或多个彩色图块被预先计算并存储在存储器中。 读取页面中存在的颜色。 将颜色与一个或多个预先计算的颜色瓷砖进行比较。 如果颜色与预先计算的颜色图块不匹配,则计算颜色的新颜色图块,从存储器中移除预先计算的颜色图块,将新的颜色图块添加到存储器中,并且新的颜色图块 用于打印页面。 如果颜色与存储在存储器中的预先计算的色块匹配,则使用预先计算的颜色图块来打印页面。
    • 2. 发明申请
    • Dynamic adjustment of raster image processing performance based on colors seen within several runs
    • 基于几个运行中看到的颜色,动态调整光栅图像处理性能
    • US20080062441A1
    • 2008-03-13
    • US11519068
    • 2006-09-12
    • Ramesh NagarajanFritz EbnerZhenhuan Wen
    • Ramesh NagarajanFritz EbnerZhenhuan Wen
    • G06F15/00
    • H04N1/52H04N1/644
    • The presently disclosed embodiments are directed to methods and systems for improving the performance of an image processor color to color tile transformation by caching color tiles most recently calculated. A page of a print job is received. One or more color tiles based on colors found in a previous print job are pre-calculated and stored in a memory. A color present in the page is read. The color is compared to one or more pre-calculated color tiles. If the color does not match a pre-calculated color tile, a new color tile for the color is calculated, a pre-calculated color tile is removed from the memory, the new color tile is added to the memory, and the new color tile is used to print the page. If the color does match a pre-calculated color tile stored in the memory, the pre-calculated color tile is used to print the page.
    • 目前公开的实施例涉及用于通过缓存最近计算出的颜色瓦来改善图像处理器颜色到彩色瓦片变换的性能的方法和系统。 接收到打印作业的页面。 基于在先前打印作业中找到的颜色的一个或多个彩色图块被预先计算并存储在存储器中。 读取页面中存在的颜色。 将颜色与一个或多个预先计算的颜色瓷砖进行比较。 如果颜色与预先计算的颜色图块不匹配,则计算颜色的新颜色图块,从存储器中移除预先计算的颜色图块,将新的颜色图块添加到存储器中,并且新的颜色图块 用于打印页面。 如果颜色与存储在存储器中的预先计算的色块匹配,则使用预先计算的颜色图块来打印页面。
    • 3. 发明授权
    • Method and system for isolated hole detection and growth in a document image
    • 在文件图像中孤立孔检测和生长的方法和系统
    • US08842342B2
    • 2014-09-23
    • US13547670
    • 2012-07-12
    • Xing LiZhenhuan WenAmal Malik
    • Xing LiZhenhuan WenAmal Malik
    • H04N1/40G06T5/00H04N1/46
    • G06K9/44G06K9/00442G06K2209/01H04N1/40037H04N1/4092
    • A method for detecting and growing isolated holes in a document image having a plurality of pixels is provided. The method includes isolating the pixels of the image to form a plurality of windows, each window having a target pixel; identifying a hole growth factor to grow an isolated hole in the received image; using the hole growth factor to identify tiered pixel patterns from a plurality of predefined, tiered pixel patterns, wherein each of the tiered pixel patterns having a predetermined hole growth factor; comparing the pixels within each window to the pixel patterns within the identified tier to identify a match between the pixels within the window and at least one of the pixel patterns; and changing a pixel value of the target pixel, when a match is identified, to grow the isolated hole by the hole growth factor.
    • 提供了一种用于在具有多个像素的文档图像中检测和增长隔离孔的方法。 该方法包括隔离图像的像素以形成多个窗口,每个窗口具有目标像素; 识别孔生长因子以在接收的图像中生长孤立的孔; 使用所述孔生长因子来从多个预定义的分层像素图案中识别分层像素图案,其中每个所述分层像素图案具有预定的孔生长因子; 将每个窗口内的像素与所识别的层中的像素图案进行比较,以识别窗口内的像素与至少一个像素图案之间的匹配; 以及当识别匹配时,改变目标像素的像素值,以通过所述孔生长因子来生长所述隔离孔。
    • 4. 发明授权
    • Systems and methods for dynamic sharpness control in system using binary to continuous tone conversion
    • 使用二进制到连续色调转换的系统中动态清晰度控制的系统和方法
    • US08705140B2
    • 2014-04-22
    • US13585553
    • 2012-08-14
    • Xing LiZhenhuan WenPeter D. McCandlish
    • Xing LiZhenhuan WenPeter D. McCandlish
    • G06T5/00H04N1/407H04N1/409
    • H04N1/4092H04N1/40075
    • Embodiments relate to systems and methods for dynamic sharpness control in system using binary to continuous tone conversion. Image data can be processed in the image path of a copier, printer, or other device to enhance sharpness based on user settings. The image can originate in a high-resolution and/or high-color format. The user can select sharpness values to provide better rendered detail. A front-end high-pass 2D filter can be adjusted in response to the settings. A binarized version of the image data is produced in the downstream path. At the back of the image path, the image would conventionally be sent through a binary data to extended contone (BDEC) low-pass filter, set to a fixed level, to produce contone output, counteracting the user's sharpness settings. Instead of applying a fixed back-end filter, that stage can be dynamically adjusted to correspond to the user's sharpness settings, reducing the low-pass effect proportionately.
    • 实施例涉及使用二进制到连续色调转换的系统中的动态清晰度控制的系统和方法。 可以在复印机,打印机或其他设备的图像路径中处理图像数据,以根据用户设置增强锐度。 该图像可以以高分辨率和/或高色格式出现。 用户可以选择锐度值来提供更好的渲染细节。 可以根据设置调整前端高通2D滤镜。 图像数据的二值化版本在下游路径中产生。 在图像路径的背面,图像通常将通过二进制数据发送到扩展连续色调(BDEC)低通滤波器,设置为固定电平,以产生连续色调输出,抵消用户的锐度设置。 代替应用固定的后端滤波器,该阶段可以动态调整以对应于用户的锐度设置,按比例降低低通效果。
    • 5. 发明授权
    • Isolated hole detection and growth
    • 隔离孔检测和生长
    • US08665499B2
    • 2014-03-04
    • US13547839
    • 2012-07-12
    • Amal MalikZhenhuan WenXing Li
    • Amal MalikZhenhuan WenXing Li
    • H04N1/407
    • H04N1/4092G06K9/44G06K2209/01H04N1/40037
    • The present disclosure relates to a method and system for processing isolated holes in an image to be printed or displayed. The method includes detecting whether pixels corresponding to an isolated hole in the image are in an off state, determining a sum of pixels that are in an on state in a first pixel ring surrounding the pixels corresponding to the isolated hole when the one or more pixels in the isolated hole are detected to be in the off state, comparing the sum of pixels in the pixel ring that are in the on state with a threshold sum, turning off a number of pixels in at least another pixel ring either comprising of or surrounding the pixels when the first sum of pixels in the on state is greater than the threshold sum, and outputting the isolated hole including the turned off first number of pixels.
    • 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。 该方法包括检测对应于图像中的孤立孔的像素是否处于关闭状态,当一个或多个像素(像素)确定围绕与孤立孔对应的像素的第一像素环中的处于导通状态的像素的总和 在隔离孔中被检测为处于关闭状态,将处于导通状态的像素环中的像素的总和与阈值和进行比较,关闭至少另一像素环中的像素的数量,包括或围绕 当处于导通状态的第一个像素总和大于阈值和时的像素,并且输出包括关闭的第一数量的像素的隔离孔。
    • 8. 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。
    • 9. 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。
    • 10. 发明授权
    • Adjusting the neutral behavior of a color marking device
    • 调整彩色标记装置的中性行为
    • US08194288B2
    • 2012-06-05
    • US12429397
    • 2009-04-24
    • Zhenhuan WenMartin S. Maltz
    • Zhenhuan WenMartin S. Maltz
    • H04N1/40
    • H04N1/608
    • What is disclosed is a novel system and method for adjusting the gray balance of a multifunction color marking device in order to change the device's neutral behavior to a desired level of acceptability. The gray balance aim curve is specified by: L*, L*(aim), a*(aim) and b*(aim), where L*(aim)=f1(L*), a*(aim)=f2(L*), and b*(aim)=f3(L*). After receiving the user-modified gray balance aim curve, the target color device constructs a 3-D N×N×N L*a*b* to L*a*b* pre-LUT to reflect the neutral aim change by transforming a neutral axis input of L*, a*=0 and b*=0 to L*(aim), a*(aim) and b*(aim). Colors further away from the neutral axis are shifted by a lesser amount. The pre-LUT is then concatenated with the current color LUT to produce an updated color LUT which is applied to the device to achieve the desired neutral behavior. The gray balance aim curve can also be based upon a pre-determined user preference.
    • 所公开的是用于调整多功能彩色标记装置的灰度平衡以便将装置的中性行为改变到期望的可接受程度的新型系统和方法。 灰度平衡目标曲线由下式指定:L *,L *(瞄准),a *(瞄准)和b *(瞄准),其中L *(瞄准)= f1(L *),a *(瞄准)= f2 (L *)和b *(aim)= f3(L *)。 在接收到用户修改的灰平衡目标曲线之后,目标彩色装置通过将中性轴变换为中性目标变化来构造一个3-DN×N×NL * a * b *到L * a * b * L *,a * = 0和b * = 0到L *(瞄准),a *(瞄准)和b *(瞄准)的输入。 远离中性轴的颜色偏移较少。 然后,将前LUT与当前颜色LUT进行连接以产生更新的颜色LUT,其被施加到设备以实现期望的中性行为。 灰平衡目标曲线也可以基于预先确定的用户偏好。