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    • 1. 发明申请
    • REALTIME USER GUIDANCE FOR FREEHAND DRAWING
    • 实时用户指导免费绘图
    • US20120295231A1
    • 2012-11-22
    • US13110923
    • 2011-05-19
    • Charles Lawrence Zitnick, IIIYong Jae LeeMichael Cohen
    • Charles Lawrence Zitnick, IIIYong Jae LeeMichael Cohen
    • G09B11/00
    • G09B11/10G09B11/00
    • Architecture that guides the freeform drawing of objects by a user to enable the user to produce improved drawings without significant training. As the user draws, the architecture dynamically updates a relevant shadow image proximate (e.g., underlying) the user's strokes. The strokes overlay an evolving shadow image, which shadow image is suggestive of object contours that guide the user during the drawing process. Relevant edge images selected from a large database are automatically blended to construct the shadow image. As the user draws, the strokes are dynamically analyzed using an encoding of overlapping windows for fast matching with the database of images. A top ranked set of matching database edge images are aligned to the drawing, a set of spatially varying weights blend the edge images into the shadow image, and a scoring technique is employed to select the optimum shadow image for display.
    • 指导用户自由绘制对象的架构,以使用户能够在不进行重大培训的情况下生成改进的图纸。 当用户绘制时,体系结构动态地更新用户笔画的邻近(例如,底层)的相关阴影图像。 笔画覆盖了不断变化的阴影图像,阴影图像暗示着在绘图过程中引导用户的对象轮廓。 从大数据库中选择的相关边缘图像将自动混合以构建阴影图像。 当用户绘制时,使用重叠窗口的编码动态地分析笔画,以便与图像数据库快速匹配。 匹配数据库边缘图像的顶级排列集合与图形对齐,一组空间变化的权重将边缘图像混合到阴影图像中,并且使用评分技术来选择用于显示的最佳阴影图像。
    • 2. 发明授权
    • Realtime user guidance for freehand drawing
    • 实时用户指导手绘
    • US08827710B2
    • 2014-09-09
    • US13110923
    • 2011-05-19
    • Charles Lawrence Zitnick, IIIYong Jae LeeMichael Cohen
    • Charles Lawrence Zitnick, IIIYong Jae LeeMichael Cohen
    • G09B11/10G09B11/00
    • G09B11/10G09B11/00
    • Architecture that guides the freeform drawing of objects by a user to enable the user to produce improved drawings without significant training. As the user draws, the architecture dynamically updates a relevant shadow image proximate (e.g., underlying) the user's strokes. The strokes overlay an evolving shadow image, which shadow image is suggestive of object contours that guide the user during the drawing process. Relevant edge images selected from a large database are automatically blended to construct the shadow image. As the user draws, the strokes are dynamically analyzed using an encoding of overlapping windows for fast matching with the database of images. A top ranked set of matching database edge images are aligned to the drawing, a set of spatially varying weights blend the edge images into the shadow image, and a scoring technique is employed to select the optimum shadow image for display.
    • 指导用户自由绘制对象的架构,以使用户能够在不进行重大培训的情况下生成改进的图纸。 当用户绘制时,体系结构动态地更新用户笔画的邻近(例如,底层)的相关阴影图像。 笔画覆盖了不断变化的阴影图像,阴影图像暗示着在绘图过程中引导用户的对象轮廓。 从大数据库中选择的相关边缘图像将自动混合以构建阴影图像。 当用户绘制时,使用重叠窗口的编码动态地分析笔画,以便与图像数据库快速匹配。 匹配数据库边缘图像的顶级排列集合与图形对齐,一组空间变化的权重将边缘图像混合到阴影图像中,并且使用评分技术来选择用于显示的最佳阴影图像。
    • 4. 发明授权
    • Data driving circuit, display apparatus, and data driving method with reception signal
    • 数据驱动电路,显示装置和具有接收信号的数据驱动方法
    • US08558827B2
    • 2013-10-15
    • US12654354
    • 2009-12-17
    • Yong Jae Lee
    • Yong Jae Lee
    • G06F3/038G09G5/00
    • G09G3/20G09G3/2092G09G3/3614G09G3/3674G09G3/3685G09G2310/0267G09G2310/027G09G2310/0275G09G2330/06
    • Provided are a data driving circuit, a display device, and a data driving method. The data driving circuit includes a clock generator configured to generate a clock signal from clock information included in a reception signal including the clock information, mode information and a body, a sampler configured to sample the reception signal according to the clock signal to obtain the mode information and the body that includes at least one of control information and data, a signal controller configured to determine whether or not the body corresponds to the control information with reference to the mode information, and generate a control signal corresponding to the control information according to a result of the determination, and a data driver configured to generate a data signal corresponding to the data according to the control signal.
    • 提供了数据驱动电路,显示装置和数据驱动方法。 数据驱动电路包括时钟发生器,被配置为从包括时钟信息,模式信息和主体的接收信号中的时钟信息产生时钟信号,采样器被配置为根据时钟信号对接收信号进行采样以获得模式 信息和主体,其包括控制信息和数据中的至少一个;信号控制器,被配置为参考模式信息来确定主体是否对应于控制信息,并且根据控制信息生成对应于控制信息的控制信号 所述确定的结果以及被配置为根据所述控制信号产生与所述数据相对应的数据信号的数据驱动器。
    • 8. 发明授权
    • Display device and method
    • 显示设备和方法
    • US09147376B2
    • 2015-09-29
    • US13149388
    • 2011-05-31
    • Yong Jae Lee
    • Yong Jae Lee
    • G09G5/00G09G3/36G09G3/20
    • G09G5/008G09G3/20G09G3/3688G09G2310/027G09G2310/08G09G2320/0223G09G2370/08
    • A display device and method are provided. The display device includes a timing controller configured to insert a clock between data and transmit the data in which the clock has been inserted, transmission lines configured to transfer the data in which the clock has been inserted, and data driver integrated circuits (ICs) configured to receive the data in which the clock has been inserted, separate the clock from the data, and drive data lines of a liquid crystal panel on the basis of the clock and the data. The timing controller includes a phase-locked loop (PLL) including an oscillator and an inductor-capacitor (LC) resonant circuit, and a reset signal generator configured to generate a reset signal causing the PLL to start coarse frequency tuning when initial power is applied or a frequency of an applied input clock changes.
    • 提供了一种显示装置和方法。 显示装置包括定时控制器,其被配置为在数据之间插入时钟并发送其中已经插入时钟的数据,配置成传送其中插入时钟的数据的传输线以及配置的数据驱动器集成电路(IC) 为了接收插入时钟的数据,将时钟与数据分开,并根据时钟和数据驱动液晶面板的数据线。 定时控制器包括一个包括一个振荡器和一个电感 - 电容(LC)谐振电路的锁相环(PLL),以及一个复位信号发生器,被配置为产生复位信号,使复位信号在初始电源被施加时使PLL开始粗调频率调谐 或施加的输入时钟的频率变化。
    • 9. 发明申请
    • METHOD FOR STORING MOTION PREDICTION-RELATED INFORMATION IN INTER PREDICTION METHOD, AND METHOD FOR OBTAINING MOTION PREDICTION-RELATED INFORMATION IN INTER PREDICTION METHOD
    • 用于存储互动预测方法中的运动预测相关信息的方法,以及用于在相互预测方法中获取运动预测相关信息的方法
    • US20140185948A1
    • 2014-07-03
    • US14115568
    • 2012-05-31
    • Chung Ku YieYong Jae LeeHui Kim
    • Chung Ku YieYong Jae LeeHui Kim
    • H04N19/51
    • H04N19/172H04N19/109H04N19/122H04N19/139H04N19/146H04N19/176H04N19/51H04N19/513H04N19/517
    • Provided are methods for storing and obtaining motion prediction-related information in inter motion prediction method. The method for storing the motion prediction-related information may include obtaining size information of prediction unit of a picture, and adaptively storing motion prediction-related information of the picture on the basis of the obtained size information of prediction unit of the picture. The method for obtaining the motion prediction-related information may include searching a first temporal motion prediction candidate block to obtain first temporal motion prediction-related information in the first temporal motion prediction candidate block, and searching a second temporal motion prediction candidate block to obtain second temporal motion prediction-related information in the second temporal motion prediction candidate block. Thus, a memory space for storing the motion prediction-related information may be efficiently utilized. Also, an error between the prediction block and an original block may be reduced to improve coding efficiency.
    • 提供了用于在帧间运动预测方法中存储和获得运动预测相关信息的方法。 用于存储运动预测相关信息的方法可以包括获得图像的预测单元的大小信息,并且基于获得的图像的预测单元的尺寸信息自适应地存储图像的运动预测相关信息。 用于获得运动预测相关信息的方法可以包括搜索第一时间运动预测候选块以获得第一时间运动预测候选块中的第一时间运动预测相关信息,并且搜索第二时间运动预测候选块以获得第二时间运动预测候选块 第二时间运动预测候选块中的时间运动预测相关信息。 因此,可以有效地利用用于存储运动预测相关信息的存储空间。 此外,可以减少预测块和原始块之间的误差,以提高编码效率。
    • 10. 发明授权
    • PLL, display using the same, and method for timing controller to generate clock using the same
    • PLL,使用相同的显示器,以及定时控制器生成使用该时钟的时钟的方法
    • US08547317B2
    • 2013-10-01
    • US13110523
    • 2011-05-18
    • Yong Jae Lee
    • Yong Jae Lee
    • G09G3/36
    • G09G3/3611G09G2370/08H03J2200/10H03L7/095H03L7/185
    • Provided are a phase-locked loop (PLL) receiving an input clock and generating a clock, a display using the PLL, and a method for a timing controller to generate a clock using the PLL. The display includes a timing controller configured to generate a first clock using a PLL, insert the first clock into data, and transmit the data into which the first clock is inserted, transmission lines configured to transfer the data into which the first clock is inserted, and data-driver integrated circuits (ICs) configured to receive the data into which the first clock is inserted, separate the first clock from the data, and drive data lines of a liquid crystal panel on the basis of the first clock and the data. The PLL includes a phase detector configured to generate a DC error corresponding to a phase difference between an input clock and the first clock, a plurality of voltage-controlled oscillators (VCOs), a VCO selector configured to select a VCO having a frequency operating range, which is a range from the highest oscillation frequency of the VCO to the lowest oscillation frequency, including a frequency of the first clock from among the plurality of VCOs with reference to the DC error, and an inductor/capacitor (LC) resonant circuit connected with the selected VCO, including a plurality of fixed capacitors, and configured to perform coarse frequency tuning of the selected VCO.
    • 提供了接收输入时钟并产生时钟的锁相环(PLL),使用PLL的显示器以及使用PLL来产生时钟的定时控制器的方法。 显示器包括定时控制器,其被配置为使用PLL生成第一时钟,将第一时钟插入到数据中,并且发送插入有第一时钟的数据,被配置为传送插入有第一时钟的数据的传输线, 以及被配置为接收插入有第一时钟的数据的数据驱动器集成电路(IC),将第一时钟与数据分开,并且基于第一时钟和数据驱动液晶面板的数据线。 PLL包括相位检测器,被配置为产生对应于输入时钟和第一时钟之间的相位差的DC误差,多个压控振荡器(VCO),VCO选择器,被配置为选择具有频率工作范围的VCO ,其是从VCO的最高振荡频率到最低振荡频率的范围,包括参考DC误差从多个VCO中的第一时钟的频率,以及连接的电感器/电容器(LC)谐振电路 所选择的VCO包括多个固定电容器,并被配置为对所选择的VCO进行粗略的频率调谐。