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    • 2. 发明授权
    • Method for feature recognition in mobile communication terminal
    • 移动通信终端特征识别方法
    • US08600677B2
    • 2013-12-03
    • US12590876
    • 2009-11-16
    • Woo-Jin JungHyun-Su Hong
    • Woo-Jin JungHyun-Su Hong
    • G01C21/00
    • G01C21/00G06K9/00704H04N1/00127H04N1/00323H04N1/00326H04N1/00336H04N1/0044H04N2101/00H04N2201/0084
    • A portable terminal is configured to perform a method for feature recognition. The portable terminal includes a Global Positioning System (GPS), a camera, a sensor, an image geographic information part, an image processor, and a controller. The GPS provides a position of the portable terminal. The camera photographs an image of a feature. The sensor detects a direction of the camera. The image geographic information part stores an image of each feature and geographic information on each feature. The image processor extracts a characteristic of the image of the feature and compares the extracted characteristic with image information stored in the image geographic info illation part. If recognizing a specific feature through the image processor, the controller proportionally compares geographic information of the image geographic information part with size and direction data on a peripheral feature near the specific feature within an image, and recognizes the peripheral feature.
    • 便携式终端被配置为执行用于特征识别的方法。 便携式终端包括全球定位系统(GPS),相机,传感器,图像地理信息部分,图像处理器和控制器。 GPS提供便携式终端的位置。 相机拍摄功能的图像。 传感器检测相机的方向。 图像地理信息部分存储每个特征的图像和关于每个特征的地理信息。 图像处理器提取特征图像的特征,并将提取的特征与存储在图像地理信息部分中的图像信息进行比较。 如果通过图像处理器识别特定特征,则控制器将图像地理信息部分的地理信息与图像中特定特征附近的外围特征的大小和方向数据进行比例比较,并识别外围特征。
    • 6. 发明申请
    • Method for feature recognition in mobile communication terminal
    • 移动通信终端特征识别方法
    • US20100131195A1
    • 2010-05-27
    • US12590876
    • 2009-11-16
    • Woo-Jin JungHyun-Su Hong
    • Woo-Jin JungHyun-Su Hong
    • G01C21/00G06K9/46H04N7/18
    • G01C21/00G06K9/00704H04N1/00127H04N1/00323H04N1/00326H04N1/00336H04N1/0044H04N2101/00H04N2201/0084
    • A portable terminal is configured to perform method for feature recognition. The portable terminal includes a Global Positioning System (GPS), a camera, a sensor, an image geographic information part, an image processor, and a controller. The GPS provides a position of the portable terminal. The camera photographs an image of a feature. The sensor detects a direction of the camera. The image geographic information part stores an image of each feature and geographic information on each feature. The image processor extracts a characteristic of the image of the feature and compares the extracted characteristic with image information stored in the image geographic information part. If recognizing a specific feature through the image processor, the controller proportionally compares geographic information of the image geographic information part with size and direction data on a peripheral feature near the specific feature within an image, and recognizes the peripheral feature.
    • 便携式终端被配置为执行用于特征识别的方法。 便携式终端包括全球定位系统(GPS),相机,传感器,图像地理信息部分,图像处理器和控制器。 GPS提供便携式终端的位置。 相机拍摄功能的图像。 传感器检测相机的方向。 图像地理信息部分存储每个特征的图像和关于每个特征的地理信息。 图像处理器提取特征图像的特征,并将提取的特征与存储在图像地理信息部分中的图像信息进行比较。 如果通过图像处理器识别特定特征,则控制器将图像地理信息部分的地理信息与图像中特定特征附近的外围特征的大小和方向数据进行比例比较,并识别外围特征。
    • 8. 发明授权
    • Display device and driving method thereof
    • 显示装置及其驱动方法
    • US09135890B2
    • 2015-09-15
    • US12981342
    • 2010-12-29
    • Yong-Jun ChoiJae Min HaWoo-Jin Jung
    • Yong-Jun ChoiJae Min HaWoo-Jin Jung
    • G09G3/36G09G5/10
    • G09G5/10G09G3/3696G09G2320/0257G09G2320/0266
    • The present invention relates to a display device and a driving method thereof. A display device according to exemplary embodiments of the present invention includes: a signal controller to process an input image signal and an input control signal to control output of a digital image signal; a gray voltage generator to generate a gray reference voltage; and a data driver to generate gray voltages based on the gray reference voltage from the gray voltage generator, to receive the digital image signal, and to output a portion selected from the generated gray voltages as a data voltage, wherein the gray reference voltage includes a first gray reference voltage for the input image signal and a second gray reference voltage for an insertion gray, and the gray voltage generator generates one of the first gray reference voltage or the second gray reference voltage according to the selection signal included in the control signal to be provided to the data driver.
    • 显示装置及其驱动方法技术领域本发明涉及显示装置及其驱动方法。 根据本发明的示例性实施例的显示装置包括:信号控制器,用于处理输入图像信号和输入控制信号,以控制数字图像信号的输出; 灰色电压发生器产生灰色参考电压; 以及数据驱动器,用于基于来自灰度电压发生器的灰度参考电压产生灰度电压,以接收数字图像信号,并将从生成的灰度电压中选出的部分输出为数据电压,其中灰色参考电压包括 用于输入图像信号的第一灰色参考电压和用于插入灰色的第二灰色参考电压,并且灰度电压发生器根据包括在控制信号中的选择信号产生第一灰色参考电压或第二灰色参考电压中的一个 提供给数据驱动程序。
    • 9. 发明授权
    • Liquid crystal display
    • 液晶显示器
    • US08416168B2
    • 2013-04-09
    • US12630475
    • 2009-12-03
    • Dong-Beom ChoDong-Gyun RaYong-Jun ChoiWoo-Jin Jung
    • Dong-Beom ChoDong-Gyun RaYong-Jun ChoiWoo-Jin Jung
    • G09G3/36
    • G09G3/3607G02F1/13454
    • A liquid crystal display (“LCD”) includes; a gate line, a plurality of pairs of a first data line and a second data line which border a plurality of pixel regions and are disposed respectively on both sides of each pixel region, a plurality of pairs of first and second thin-film transistors (“TFTs”) which are connected to the gate line and a pair of the first and second data lines, and a first and second subpixel electrode disposed in each pixel region and connected to the first and second TFTs, respectively, wherein the pixel regions include first through third pixel regions arranged in the first direction, wherein at least one of the first and second TFTs of the second pixel region is disposed on a same side of an adjacent data line as the first and second subpixel electrodes of one of the first and third pixel regions.
    • 液晶显示器(LCD)包括: 栅极线,多对第一数据线和与多个像素区域相邻并分别设置在每个像素区域的两侧上的第二数据线,多对第一和第二薄膜晶体管( TFT),其连接到栅极线和一对第一和第二数据线;以及第一和第二子像素电极,分别设置在每个像素区域中并分别连接到第一和第二TFT,其中像素区域包括第一至第 第三像素区域布置在第一方向上,其中第二像素区域的第一和第二TFT中的至少一个设置在与第一和第三像素之一的第一和第二子像素电极相邻的数据线的同一侧 地区。