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    • 63. 发明申请
    • ANGLE INVARIANT VISUAL ANALYSIS
    • 角度不变视觉分析
    • US20120051639A1
    • 2012-03-01
    • US13003717
    • 2010-08-24
    • Ezekiel Kruglick
    • Ezekiel Kruglick
    • G06K9/34
    • G06T7/48
    • Technologies are generally described for performing image analysis of an image using a repeating geometric sequence. In some examples, a computing system accesses image data that defines an image for image analysis. The computing system determines a repeating geometric sequence that generates variously oriented edges or sub-regions in the image data. The computing system applies the repeating geometric sequence to the image data, thereby generating a series of coordinates that represent the image data defined by the variously oriented edges or sub-regions. The coordinates are determined by the variously oriented edges or sub-regions and not by horizontal or vertical Cartesian lines. The computing system organizes the image data represented by the series of coordinates into a set of one or more arrays and performs image analysis on the set of one or more arrays to produce an image analysis result for the image data.
    • 通常描述了使用重复几何序列对图像进行图像分析的技术。 在一些示例中,计算系统访问定义用于图像分析的图像的图像数据。 计算系统确定在图像数据中生成各种取向的边缘或子区域的重复几何序列。 计算系统将重复的几何序列应用于图像数据,从而生成一系列坐标,其表示由各种取向的边缘或子区域定义的图像数据。 坐标由各种取向的边缘或子区域决定,而不是水平或垂直笛卡尔线。 计算系统将由一系列坐标表示的图像数据组织成一组或多个阵列,并对一个或多个阵列的集合进行图像分析,以产生图像数据的图像分析结果。
    • 64. 发明申请
    • COMMUNICATION NETWORK MONITORING
    • 通信网络监控
    • US20120033556A1
    • 2012-02-09
    • US12999835
    • 2010-08-06
    • Ezekiel Kruglick
    • Ezekiel Kruglick
    • H04L12/26
    • H04L43/026H04L41/0631
    • Techniques described herein generally include methods, devices and systems related to monitoring a flow of data packets in a communication network. Some example devices may include one or more of a stream capture unit, and/or an analyzer. The stream capture unit can be coupled to a communication network, and configured to monitor a flow of data packets associated with communication steams in the communication network, and identify a first stream of data packets and a second stream of data packets from the monitored flow of data packets. The first stream and the second stream are associated with a single destination. The analyzer can be coupled to the stream capture unit and configured to identify an event associated with from the first stream identified by the stream capture unit, identify information related to the identified event from the second stream identified by the stream capture unit, and determine a response based on the event and the information related to the event.
    • 本文描述的技术通常包括与监视通信网络中的数据分组流相关的方法,设备和系统。 一些示例性设备可以包括流捕获单元和/或分析器中的一个或多个。 流捕获单元可以耦合到通信网络,并且被配置为监视与通信网络中的通信流相关联的数据分组的流,并且从监视的流的流中识别数据分组的第一流和数据分组的第二流 数据包。 第一个流和第二个流与一个目的地相关联。 分析器可以耦合到流捕获单元并且被配置为识别与由流捕获单元识别的第一流相关联的事件,从由流捕获单元识别的第二流识别与所识别的事件相关的信息,并且确定 基于事件的响应和与事件相关的信息。
    • 67. 发明申请
    • Communication Between Touch-Panel Devices
    • 触摸屏设备之间的通信
    • US20110304583A1
    • 2011-12-15
    • US13142093
    • 2010-06-10
    • Ezekiel Kruglick
    • Ezekiel Kruglick
    • G06F3/044
    • G06F3/044G06F21/35G06F21/83H04L63/061
    • Technologies described herein generally relate to communications between electronic systems. Each electronic system includes a touch-panel device that may be positioned in proximity to one another such that the near field emissions of the touch-panel devices interact with one another. The touch-panel devices can be adapted to sense one another based on these near field emissions. Once detected, the touch-panel devices can be configured to establish a communication channel to communicate information between one another via modulated near field emissions. Such exchanged information may include identification information, network addresses, security keys, and so forth. The exchanged information may be used for discovery or pairing between the touch-panel devices. The technology presented herein can support an intuitive user experience and improved security over traditional wireless pairing approaches.
    • 本文描述的技术通常涉及电子系统之间的通信。 每个电子系统包括可以彼此靠近地定位的触摸面板装置,使得触摸面板装置的近场发射彼此相互作用。 触摸屏设备可以基于这些近场发射来适应彼此的感测。 一旦检测到,触摸面板设备可以被配置成建立通信信道,以经由调制的近场发射在彼此之间传送信息。 这种交换的信息可以包括标识信息,网络地址,安全密钥等。 交换的信息可以用于在触摸面板设备之间的发现或配对。 本文介绍的技术可以支持直观的用户体验,并提高传统无线配对方法的安全性。