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    • 3. 发明申请
    • OBJECT TRACKING METHOD AND DEVICE
    • 对象跟踪方法和设备
    • US20150169956A1
    • 2015-06-18
    • US14568223
    • 2014-12-12
    • Ganmei YOUYaojie LUZhongchao SHIChao CHENGang WANG
    • Ganmei YOUYaojie LUZhongchao SHIChao CHENGang WANG
    • G06K9/00G06K9/46G06K9/62G06K9/52
    • G06K9/00624G06K9/00805G06K9/4604G06K9/52G06K9/6215G06T7/246G06T2207/10021G06T2207/10028G06T2207/20068G06T2207/20076G06T2207/30252
    • Disclosed is an object tracking method. The method includes steps of obtaining a first boundary region of a waiting-for-recognition object in the disparity map related to the current frame; calculating a probability of each valid pixel in the first boundary region so as to get a pixel probability map of the waiting-for-recognition object; obtaining historic tracking data of each tracked object, which includes identifier information of the tracked object and a pixel probability map related to each of one or more prior frame related disparity maps prior to the disparity map related to the current frame; determining identifier information of the waiting-for-recognition object, and updating the pixel probability map of the waiting-for-recognition object; and updating, based on the updated pixel probability map of the waiting-for-recognition object, the first boundary region of the waiting-for-recognition object, so as to get a second boundary region of the waiting-for-recognition object.
    • 公开了一种物体跟踪方法。 该方法包括以下步骤:获得与当前帧相关的视差图中等待识别对象的第一边界区域; 计算第一边界区域中的每个有效像素的概率,以获得等待识别对象的像素概率图; 获得每个跟踪对象的历史跟踪数据,其包括跟踪对象的标识符信息和与在与当前帧相关的视差图之前的一个或多个先前帧相关视差图中的每一个相关的像素概率图; 确定等待识别对象的标识符信息,以及更新等待识别对象的像素概率图; 以及基于等待识别对象的更新的像素概率图来更新等待识别对象的第一边界区域,以获得等待识别对象的第二边界区域。
    • 7. 发明申请
    • METHOD AND APPARATUS FOR DETECTING ABNORMAL SITUATION
    • 检测异常情况的方法和装置
    • US20170024874A1
    • 2017-01-26
    • US15143718
    • 2016-05-02
    • Bo PANGShengyin FANXin WANGQian WANGGang WANG
    • Bo PANGShengyin FANXin WANGQian WANGGang WANG
    • G06T7/00G06K9/00
    • G06K9/00771G06K9/00389
    • A method and an apparatus for detecting an abnormal situation are disclosed. The method includes recognizing whether a detection target exists in a captured image; generating, based on the captured image, a three-dimensional point cloud of the detection target in the captured image, when the detection target exists; obtaining, based on the generated three-dimensional point cloud, one or more current posture features of the detection target; and determining, based on the current posture features and one or more predetermined posture feature standards, whether the abnormal situation exists, the posture feature standards being previously determined based on one or more common features when the detection target performs a plurality of abnormal actions.
    • 公开了一种用于检测异常情况的方法和装置。 该方法包括识别捕获图像中是否存在检测目标; 当所述检测目标存在时,基于所捕获的图像生成所述捕获图像中的所述检测目标的三维点云; 基于生成的三维点云获得检测对象的一个​​或多个当前姿态特征; 以及基于当前姿态特征和一个或多个预定姿势特征标准,确定是否存在异常情况,当检测目标执行多个异常动作时,基于一个或多个共同特征预先确定姿势特征标准。
    • 8. 发明申请
    • ARRAY SUBSTRATE AND A METHOD FOR FABRICATING THE SAME AND AN ELECTRONIC PAPER DISPLAY
    • 阵列基板及其制造方法和电子纸显示器
    • US20120138972A1
    • 2012-06-07
    • US13308752
    • 2011-12-01
    • Wenbo LIGang WANGZhuo ZHANG
    • Wenbo LIGang WANGZhuo ZHANG
    • H01L33/62
    • H01L29/78633G02F1/136227H01L29/78666H01L29/7869
    • The present disclosure discloses a method for fabricating an array substrate comprising: depositing a source/drain metallic film on a first base substrate, and forming a source electrode, a drain electrode and a data line; sequentially depositing a semiconductor layer film, a gate insulating layer film and a gate metallic film on the first base substrate, and forming a semiconductor layer, a gate insulating layer, a gate electrode and a gate line; depositing a gate protection layer film on the first base substrate, and forming a gate protection layer and a through hole, wherein the through hole is formed on the gate protection layer corresponding to the drain electrode to expose a portion of the drain electrode; and depositing a pixel electrode film on the first base substrate, and forming a pixel electrode, wherein the pixel electrode is connected to the drain electrode via the through hole.
    • 本公开公开了一种制造阵列基板的方法,包括:在第一基底基板上沉积源极/漏极金属膜,以及形成源电极,漏电极和数据线; 在第一基底基板上依次沉积半导体层膜,栅极绝缘层膜和栅极金属膜,以及形成半导体层,栅极绝缘层,栅电极和栅极线; 在所述第一基板上沉积栅极保护层膜,形成栅极保护层和通孔,其中所述通孔形成在与所述漏电极相对应的所述栅极保护层上以暴露所述漏极电极的一部分; 以及在所述第一基板上沉积像素电极膜,并且形成像素电极,其中所述像素电极经由所述通孔连接到所述漏电极。
    • 10. 发明申请
    • PIXEL UNIT CIRCUIT AND OLED DISPLAY APPARATUS
    • 像素单元电路和OLED显示设备
    • US20120293482A1
    • 2012-11-22
    • US13474310
    • 2012-05-17
    • Zhongyuan WULiye DUANGang WANGTian XIAO
    • Zhongyuan WULiye DUANGang WANGTian XIAO
    • G09G3/32G09G5/00
    • G09G3/3233G09G2300/0819G09G2300/0852G09G2300/0861G09G2320/043G09G2320/045
    • The present disclosure discloses a pixel unit circuit and an OLED display apparatus. The pixel unit circuit comprises a first sub-circuit module, a second sub-circuit module, a first capacitor and OLED. An input of the first sub-circuit module is connected to a data line; another input of the first sub-circuit module is connected to an output of the second sub-circuit module and a first terminal of the OLED; an output of the first sub-circuit module is connected to an input/output of the second sub-circuit module via the first capacitor; a voltage difference between positive power supply and negative power supply of a backboard is applied between an input of the second sub-circuit module and a second terminal of the OLED. The pixel unit circuit can compensate the aging of OLED devices, the non-uniformity of threshold voltage of TFT driving transistors, and IR Drop of the power supply of the backboard.
    • 本公开公开了一种像素单元电路和OLED显示装置。 像素单元电路包括第一子电路模块,第二子电路模块,第一电容器和OLED。 第一子电路模块的输入连接到数据线; 第一子电路模块的另一个输入连接到第二子电路模块的输出端和OLED的第一端子; 第一子电路模块的输出经由第一电容器连接到第二子电路模块的输入/输出; 在第二子电路模块的输入和OLED的第二端子之间施加正电源和背板的负电源之间的电压差。 像素单元电路可以补偿OLED器件的老化,TFT驱动晶体管的阈值电压的不均匀性和背板电源的IR Drop。