会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 7. 发明授权
    • System and method for image compression
    • 图像压缩的系统和方法
    • US08774534B2
    • 2014-07-08
    • US13259877
    • 2010-04-08
    • Rony Zarom
    • Rony Zarom
    • G06K9/36G06K9/62G06K9/46
    • H04N19/94H04N19/46H04N19/90H04N19/97
    • A system and method for compressing a digital image may store a dictionary having a plurality of predetermined template patterns each identified by a code. The image may be divided into a plurality of sub-regions, and a template pattern may be selected from the dictionary that most closely matches an image features for each sub-region. A compressed data set may be generated for the image in which each sub-region is represented by a code identifying the associated template pattern. Once the data is compressed, the image may be reconstructed using the code from the compressed data set to retrieve the template pattern from the dictionary for each sub-region and may reconstruct a full image by combining the template patterns for all of the sub-regions.
    • 用于压缩数字图像的系统和方法可以存储具有由代码识别的多个预定模板模式的字典。 图像可以被划分为多个子区域,并且可以从与每个子区域的图像特征最匹配的字典中选择模板图案。 可以为其中每个子区域由标识相关联的模板模式的代码表示的图像生成压缩数据集。 一旦数据被压缩,可以使用来自压缩数据集的代码来重构图像,以从每个子区域的字典中检索模板模式,并且可以通过组合所有子区域的模板模式来重建全图像 。
    • 8. 发明申请
    • METHOD AND SYSTEM FOR TRAFFIC PERFORMANCE ANALYSIS, NETWORK RECONFIGURATION, AND REAL-TIME TRAFFIC MONITORING
    • 交通性能分析,网络重构和实时交通监控的方法与系统
    • US20130197790A1
    • 2013-08-01
    • US13756107
    • 2013-01-31
    • Taif University
    • Mohammed OualiSultan Hamadi Aljahdali
    • G08G1/01
    • G08G1/0133H04N19/97
    • A method and system for traffic performance analysis, network reconfiguration, and real-time traffic monitoring and surveillance is described. Traffic performance analysis and congestion detection is achieved through discrete event simulation. The road network is translated to a graph. The translation is the result of the processing of a high resolution satellite or aerial image consisting of road extraction. In the resulting graph, road intersections are represented by vertices and road sections by edges. Edges have several properties such as the capacity of the section, presence of traffic signs and traffic lights, rate of generation (vehicles leaving parking), and rate of absorption (vehicles going to parking) Temporal simulation allows detecting congestions as well as congestion propagation. Real-time traffic monitoring consists of detecting abnormal traffic slowdowns. This is achieved by observing traffic with a camera. The video is processed to compute the optical flow which allows the computation of the traffic speed. Individual vehicle speed is also computed to detect speeding vehicles by comparing their speed to the nominal speed limit in the road section. The whole system can be grouped in a traffic control room or a traffic information system.
    • 描述了用于交通性能分析,网络重构和实时交通监控和监控的方法和系统。 通过离散事件仿真实现交通绩效分析和拥塞检测。 道路网络被转换为图形。 翻译是处理由道路提取组成的高分辨率卫星或航空影像的结果。 在得到的图形中,道路交叉点由顶点和路段由边缘表示。 边缘有几个属性,如区段的容量,交通标志和交通灯的存在,发电率(车辆离开停车场)和吸收率(车辆停车)时间模拟允许检测拥堵以及拥堵传播。 实时流量监控包括检测异常流量减速。 这是通过观察相机的流量来实现的。 处理视频以计算允许计算交通速度的光流。 还计算单个车辆速度,以通过将其速度与道路部分的标称速度限制进行比较来检测超速车辆。 整个系统可以分组在交通控制室或交通信息系统中。
    • 10. 发明申请
    • User Control of the Visual Performance of a Compressive Imaging System
    • 压缩成像系统的视觉性能的用户控制
    • US20130002968A1
    • 2013-01-03
    • US13534249
    • 2012-06-27
    • Robert F. BridgeDonna E. HewittTyler H. Weston
    • Robert F. BridgeDonna E. HewittTyler H. Weston
    • H04N5/64
    • H04N5/232G06F19/00H04N19/97
    • A compressive imaging system modulates an incident light stream and senses the modulated light stream to obtain compressive measurements. The measurements are algorithmically processed to reconstruct a sequence of images. The image sequence is displayed. The system receives user input (through a user interface) representing a user command to set or change one or more visual performance factors such as image quality and frame rate. The system immediately adjusts the visual performance factors by adjusting one or more underlying system parameters/algorithms. Thus, the visual consequences of any inputs to the user interface become immediately apparent in the displayed sequence of images. The user may therefore intuitively learn how to operate the user interface simply by making trial inputs and observing their effects in the displayed image sequence. The user interface may include one or more mechanical input devices and/or one or more graphical user interface (GUI) elements.
    • 压缩成像系统调制入射光流并感测调制的光流以获得压缩测量。 对算法进行算法处理以重构图像序列。 显示图像序列。 系统接收表示用户命令的用户输入(通过用户界面)来设置或改变一个或多个视觉性能因素,例如图像质量和帧速率。 系统通过调整一个或多个底层系统参数/算法立即调整视觉性能因素。 因此,在所显示的图像序列中,对用户界面的任何输入的视觉后果变得立即显现。 因此,用户可以直观地学习如何通过进行试用输入并观察其在所显示的图像序列中的效果来操作用户界面。 用户界面可以包括一个或多个机械输入设备和/或一个或多个图形用户界面(GUI)元件。