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    • 11. 发明授权
    • Image optimization system and method for optimizing images
    • 图像优化系统和图像优化方法
    • US08803998B2
    • 2014-08-12
    • US13169031
    • 2011-06-27
    • Guang-Jian Wang
    • Guang-Jian Wang
    • H04N5/228G06K9/00
    • G06T5/009G06T2207/10024
    • In a system and method for optimizing images, a digital image of an object is captured by an image capturing device, and a standard image of the object is obtained from a storage system of a computing device. The system calculates an image average energy density (IAED) value of the digital image based on RGB (red, green, blue) channels of the digital image, and calculates an IAED value of the standard image based on RGB channels of the standard image. The system is further calculates a difference between the IAED value of the digital image and the IAED value of the standard image, and applies any difference to optimize every pixel point of the digital image to generate optimized pixel points. The system integrates all the optimized pixel points or original pixel points to generate an optimized image for display.
    • 在用于优化图像的系统和方法中,由图像捕获装置捕获对象的数字图像,并且从计算装置的存储系统获得对象的标准图像。 该系统基于数字图像的RGB(红色,绿色,蓝色)通道计算数字图像的图像平均能量密度(IAED)值,并且基于标准图像的RGB通道来计算标准图像的IAED值。 该系统进一步计算数字图像的IAED值与标准图像的IAED值之间的差异,并且应用任何差异来优化数字图像的每个像素点以产生优化的像素点。 该系统集成了所有优化的像素点或原始像素点,以生成优化的图像进行显示。
    • 12. 发明授权
    • CPU frequency adjusting system and method
    • CPU调频系统及方法
    • US07370221B2
    • 2008-05-06
    • US11025809
    • 2004-12-28
    • Gui-Hua TangGuang-Jian WangYi-Ching Weng
    • Gui-Hua TangGuang-Jian WangYi-Ching Weng
    • G06F1/04
    • G06F9/4411
    • A Central Processing Unit (CPU) frequency adjusting system has a multi-level architecture including an application level, a driver level, a hardware abstraction level, and a hardware platform. The application level includes a user interface (10) for generating a command signal to adjust a CPU frequency according to an input from a user, and displaying an adjusted CPU frequency. The hardware abstraction level includes a frequency adjusting module (130) for adjusting a current CPU frequency in a flash memory (14) with the new CPU frequency input by the user; and a data accessing module (131) for storing the adjusted CPU frequency in the flash memory, and reading the adjusted CPU frequency from the flash memory in order to display the adjusted CPU frequency on the user interface. The CPU frequency adjusting system can reduce the complexity of the hardware abstraction level, and is compatible with different types of BIOSs.
    • 中央处理单元(CPU)频率调整系统具有包括应用级别,驱动程序级别,硬件抽象级别和硬件平台的多级架构。 应用级别包括用于根据来自用户的输入生成指令信号以调整CPU频率并显示调整后的CPU频率的用户界面(10)。 硬件抽象级别包括频率调整模块(130),用于利用用户输入的新CPU频率来调整闪速存储器(14)中的当前CPU频率; 以及数据访问模块(131),用于将调整后的CPU频率存储在闪速存储器中,并且从闪速存储器读取经调整的CPU频率,以便在用户界面上显示经调整的CPU频率。 CPU频率调整系统可以降低硬件抽象级别的复杂性,并兼容不同类型的BIOS。
    • 13. 发明授权
    • Projector and method for adjusting projected image
    • 投影仪和投影图像调整方法
    • US08454175B2
    • 2013-06-04
    • US13187530
    • 2011-07-21
    • Guang-Jian Wang
    • Guang-Jian Wang
    • G03B21/14G06K9/00
    • H04N9/3182H04N9/3194
    • In a method for adjusting projected images of a projector, a first image of a projection area is captured using an image capturing unit, and a second image of the projection area is capture after a predetermined interval. A background area of the second image is determined if the projected image of the projection area is determined as a static image by comparing the first image with the second image. The second image is divided into M pixel blocks, and brightness value of each pixel block is adjusted if a color of the pixel block is approximative to a color of the background area. A projection image is generated using the adjusted image of the second image, and the generated image is projected on the projection area.
    • 在用于调整投影仪的投影图像的方法中,使用图像捕获单元捕获投影区域的第一图像,并且在预定间隔之后捕获投影区域的第二图像。 通过将第一图像与第二图像进行比较,确定投影区域的投影图像是否被确定为静态图像的第二图像的背景区域。 第二图像被分成M个像素块,并且如果像素块的颜色近似于背景区域的颜色,则调整每个像素块的亮度值。 使用第二图像的调整图像生成投影图像,并且将生成的图像投影在投影区域上。
    • 14. 发明授权
    • Projector and color improvement method of the projector
    • 投影机的投影机和颜色改进方法
    • US08605106B2
    • 2013-12-10
    • US13029127
    • 2011-02-17
    • Guang-Jian Wang
    • Guang-Jian Wang
    • G09G5/02G06K9/00G09G5/00
    • H04N9/3194H04N9/3182
    • A method improves color of projected images using a projector. The method calculates a first improvement factor, a second improvement factor and a third improvement factor, divides an original image into a red picture, a green picture and a blue picture. The method multiplies a pixel value of each pixel point of the red picture by the first improvement factor to obtain an improved red picture, multiplies a pixel value of each pixel point of the green picture by the second improvement factor to obtain an improved green picture, and multiplies a pixel value of each pixel point of the red picture by the third improvement factor to obtain an improved blue picture. The method combines the improved red, green and blue pictures to generate a combined image, and projects the combined image on a projection area to obtain the projected image having similar color to the original image.
    • 一种使用投影仪改进投影图像的颜色的方法。 该方法计算第一改进因子,第二改进因子和第三改进因子,将原始图像划分为红色图像,绿色图像和蓝色图像。 该方法将红色图像的每个像素点的像素值乘以第一改进因子以获得改进的红色图像,将绿色图像的每个像素点的像素值乘以第二改进因子以获得改进的绿色图像, 并且将红色图像的每个像素点的像素值乘以第三改进因子以获得改进的蓝色图像。 该方法结合了改进的红色,绿色和蓝色图像以生成组合图像,并将投影区域上的组合图像投射到获得与原始图像具有相似颜色的投影图像。
    • 15. 发明授权
    • System and method for identifying discrepancy of image of object
    • 识别物体图像差异的系统和方法
    • US08488004B2
    • 2013-07-16
    • US13186450
    • 2011-07-19
    • Guang-Jian WangXiao-Jun FuMeng-Zhou Liu
    • Guang-Jian WangXiao-Jun FuMeng-Zhou Liu
    • H04N5/225
    • G06T7/001G06T2207/20021G06T2207/30141
    • In a method for identifying discrepancy of a captured digital image of an object, a standard image of the object is obtained. A first difference value between an IAED value of the digital image and an IAED value of the standard image is calculated. Both the two images are divided into N pixel blocks. A second difference value between an IAED value of each pixel block of the digital image and an IAED value of each pixel block of the standard image is calculated. A coefficient T is generated for comparing the digital image and the standard image, and each block of the digital image is compared with each pixel block of the standard image. The same pixel blocks between the digital image and the standard image are eliminated from the digital image, and a discrepant image is generated according to remaining pixel blocks of the digital image.
    • 在识别对象的拍摄数字图像的差异的方法中,获得对象的标准图像。 计算数字图像的IAED值与标准图像的IAED值之间的第一差分值。 两个图像都被划分为N个像素块。 计算数字图像的每个像素块的IAED值与标准图像的每个像素块的IAED值之间的第二差值。 产生用于比较数字图像和标准图像的系数T,并将数字图像的每个块与标准图像的每个像素块进行比较。 从数字图像中消除数字图像和标准图像之间的相同像素块,并且根据数字图像的剩余像素块生成差异图像。
    • 16. 发明授权
    • Image correction system and method
    • 图像校正系统及方法
    • US08417019B2
    • 2013-04-09
    • US13192482
    • 2011-07-28
    • Guang-Jian Wang
    • Guang-Jian Wang
    • G06K9/00H04N5/253
    • G06T7/001G06T2207/10024G06T2207/20021G06T2207/30141
    • In an image correction method, an image of an object is captured, and a standard image of the object is obtain from a storage system of a computing device. A target area contains most image characteristics of the object is determined from the standard image of the object, and a standard pixel block having N×N pixels is extracted from the target area. The captured image is divided into M pixel blocks having N×N pixels. Each of the pixel blocks of the captured image are analyzed with the standard pixel block. A pixel value of each pixel of the captured image is corrected according the analysis, and the corrected image is output to a display device of a computing device for display.
    • 在图像校正方法中,捕获对象的图像,并且从计算装置的存储系统获得对象的标准图像。 从对象的标准图像确定目标区域包含对象的大部分图像特征,并且从目标区域提取具有N×N个像素的标准像素块。 拍摄图像被分成具有N×N个像素的M个像素块。 用标准像素块分析拍摄图像的每个像素块。 根据分析来校正拍摄图像的每个像素的像素值,并将校正后的图像输出到用于显示的计算装置的显示装置。
    • 17. 发明申请
    • Method for configuration file management in a computing system
    • 计算系统中配置文件管理的方法
    • US20060080334A1
    • 2006-04-13
    • US11081956
    • 2005-03-16
    • Guang-Jian WangHong-Tao MaYu-Long LinDong-Feng WangJuan Wu
    • Guang-Jian WangHong-Tao MaYu-Long LinDong-Feng WangJuan Wu
    • G06F7/00
    • G06F8/71
    • A method for configuration file management in a computing system includes the steps of: acquiring a name and a type of hardware, and selecting a particular installation interface for the hardware according to the type of hardware; establishing configuration files, processing a plurality of parameter expressions in a configuration file, storing the processed parameter expressions as configuration information, and configuring program; accessing the configuration files, and comparing the configuration files to parameter of running hardware; determining whether the configuration files and parameter of running hardware match; executing the programs using the stored configuration information if the configuration files and parameter of running hardware match; determining whether the programs are operable; and appending the programs to the compact disc if the programs are operable.
    • 一种用于计算系统中配置文件管理的方法,包括以下步骤:获取硬件的名称和类型,并根据硬件的类型为硬件选择特定的安装界面; 建立配置文件,处理配置文件中的多个参数表达式,将处理的参数表达式存储为配置信息,以及配置程序; 访问配置文件,并将配置文件与运行硬件的参数进行比较; 确定运行硬件的配置文件和参数是否匹配; 如果运行硬件的配置文件和参数匹配,则使用存储的配置信息执行程序; 确定程序是否可操作; 并且如果程序可操作,则将程序附加到光盘。
    • 18. 发明申请
    • CPU frequency adjusting system and method
    • CPU调频系统及方法
    • US20050210309A1
    • 2005-09-22
    • US11025809
    • 2004-12-28
    • Gui-Hua TangGuang-Jian WangYi-Ching Weng
    • Gui-Hua TangGuang-Jian WangYi-Ching Weng
    • G06F1/04G06F9/445
    • G06F9/4411
    • A Central Processing Unit (CPU) frequency adjusting system has a multi-level architecture including an application level, a driver level, a hardware abstraction level, and a hardware platform. The application level includes a user interface (10) for generating a command signal to adjust a CPU frequency according to an input from a user, and displaying an adjusted CPU frequency. The hardware abstraction level includes a frequency adjusting module (130) for adjusting a current CPU frequency in a flash memory (14) with the new CPU frequency input by the user; and a data accessing module (131) for storing the adjusted CPU frequency in the flash memory, and reading the adjusted CPU frequency from the flash memory in order to display the adjusted CPU frequency on the user interface. The CPU frequency adjusting system can reduce the complexity of the hardware abstraction level, and is compatible with different types of BIOSs.
    • 中央处理单元(CPU)频率调整系统具有包括应用级别,驱动程序级别,硬件抽象级别和硬件平台的多级架构。 应用级别包括用于根据来自用户的输入生成指令信号以调整CPU频率并显示调整后的CPU频率的用户界面(10)。 硬件抽象级别包括频率调整模块(130),用于利用用户输入的新CPU频率来调整闪速存储器(14)中的当前CPU频率; 以及数据访问模块(131),用于将调整后的CPU频率存储在闪速存储器中,并且从闪速存储器读取经调整的CPU频率,以便在用户界面上显示经调整的CPU频率。 CPU频率调整系统可以降低硬件抽象级别的复杂性,并兼容不同类型的BIOS。