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    • 4. 发明授权
    • System and method for object identification and behavior characterization using video analysis
    • 使用视频分析的对象识别和行为表征的系统和方法
    • US06678413B1
    • 2004-01-13
    • US09718374
    • 2000-11-24
    • Yiqing LiangLinda CrnicVikrant KoblaWayne Wolf
    • Yiqing LiangLinda CrnicVikrant KoblaWayne Wolf
    • G06K900
    • G06K9/00342A01K1/031A61B5/1113A61B5/1116A61B5/1118A61B5/1128A61B5/4094A61B5/7264A61B5/7267A61B2503/40A61B2503/42G06F19/00G06K9/00335G06K9/00369G06T7/20G06T2207/30004
    • In general, the present invention is directed to systems and methods for finding the position and shape of an object using video. The invention includes a system with a video camera coupled to a computer in which the computer is configured to automatically provide object segmentation and identification, object motion tracking (for moving objects), object position classification, and behavior identification. In a preferred embodiment, the present invention may use background subtraction for object identification and tracking, probabilistic approach with expectation-maximization for tracking the motion detection and object classification, and decision tree classification for behavior identification. Thus, the present invention is capable of automatically monitoring a video image to identify, track and classify the actions of various objects and the object's movements within the image. The image may be provided in real time or from storage. The invention is particularly useful for monitoring and classifying animal behavior for testing drugs and genetic mutations, but may be used in any of a number of other surveillance applications.
    • 通常,本发明涉及用于使用视频来查找对象的位置和形状的系统和方法。 本发明包括具有耦合到计算机的摄像机的系统,其中计算机被配置为自动提供对象分割和识别,对象运动跟踪(用于移动对象),对象位置分类和行为识别。 在优选实施例中,本发明可以使用用于对象识别和跟踪的背景减除,用于跟踪运动检测和对象分类的期望最大化的概率方法以及用于行为识别的决策树分类。 因此,本发明能够自动监视视频图像以识别,跟踪和分类各种对象的动作和对象在图像内的运动。 图像可以实时地或从存储提供。 本发明特别可用于监测和分类用于测试药物和遗传突变的动物行为,但可用于许多其他监视应用中的任何一种。
    • 5. 发明授权
    • System and method for object identification and behavior characterization using video analysis
    • 使用视频分析的对象识别和行为表征的系统和方法
    • US07068842B2
    • 2006-06-27
    • US10666741
    • 2003-09-19
    • Yiqing LiangLinda CrnicVikrant KoblaWayne Wolf
    • Yiqing LiangLinda CrnicVikrant KoblaWayne Wolf
    • G06K9/00
    • G06K9/00342A01K1/031A61B5/1113A61B5/1116A61B5/1118A61B5/1128A61B5/4094A61B5/7264A61B5/7267A61B2503/40A61B2503/42G06F19/00G06K9/00335G06K9/00369G06T7/20G06T2207/30004
    • In general, the present invention is directed to systems and methods for finding the position and shape of an object using video. The invention includes a system with a video camera coupled to a computer in which the computer is configured to automatically provide object segmentation and identification, object motion tracking (for moving objects), object position classification, and behavior identification. In a preferred embodiment, the present invention may use background subtraction for object identification and tracking, probabilistic approach with expectation-maximization for tracking the motion detection and object classification, and decision tree classification for behavior identification. Thus, the present invention is capable of automatically monitoring a video image to identify, track and classify the actions of various objects and the object's movements within the image. The image may be provided in real time or from storage. The invention is particularly useful for monitoring and classifying animal behavior for testing drugs and genetic mutations, but may be used in any of a number of other surveillance applications.
    • 通常,本发明涉及用于使用视频来查找对象的位置和形状的系统和方法。 本发明包括具有耦合到计算机的摄像机的系统,其中计算机被配置为自动提供对象分割和识别,对象运动跟踪(用于移动对象),对象位置分类和行为识别。 在优选实施例中,本发明可以使用用于对象识别和跟踪的背景减除,用于跟踪运动检测和对象分类的期望最大化的概率方法以及用于行为识别的决策树分类。 因此,本发明能够自动监视视频图像以识别,跟踪和分类各种对象的动作和对象在图像内的运动。 图像可以实时地或从存储提供。 本发明特别可用于监测和分类用于测试药物和遗传突变的动物行为,但可用于许多其他监视应用中的任何一种。
    • 6. 发明授权
    • Method for individually replacing ozone generator electrode assemblies
    • 单独更换臭氧发生器电极组件的方法
    • US09469537B2
    • 2016-10-18
    • US15153982
    • 2016-05-13
    • Wayne Wolf
    • Wayne Wolf
    • B01J19/12C01B13/11
    • C01B13/115B01J19/088B01J2219/0809B01J2219/083B01J2219/0849B01J2219/0875C01B13/11C01B2201/14C01B2201/22C01B2201/32C01B2201/62C01B2201/76C01B2201/90Y10T29/4973
    • A method of replacing an electrode assembly of an ozone generator includes removing an upper closure plate of the ozone generator, removing a contact plate, lifting an individual electrode assembly to be replaced from its associated dielectric tube, and sliding a replacement electrode assembly into place. A method of replacing a dielectric tube of an ozone generator includes removing the upper closure plate, contact plate, individual electrode assembly to be replaced from its associated dielectric tube, removing a suspension means and its associated suspended dielectric tube from its respective lower seal plate aperture, sliding a replacement dielectric tube into the removed suspension means, sliding the removed suspension means and replacement dielectric tube into its respective lower seal plate aperture, sliding the lifted electrode assembly into the replaced dielectric tube, and sliding the electrode assembly with its replaced dielectric tube suspended from its associated suspension means into place.
    • 更换臭氧发生器的电极组件的方法包括去除臭氧发生器的上封闭板,去除接触板,从其相关联的电介质管提起待更换的单个电极组件,并将替换电极组件滑动到位。 更换臭氧发生器的电介质管的方法包括从其相关联的介电管去除上封闭板,接触板,待更换的单独电极组件,从其相应的下密封板孔中移除悬挂装置及其相关联的悬置电介质管 将替代的电介质管滑入去除的悬挂装置中,将移除的悬挂装置和替换的介质管滑动到其相应的下密封板孔中,将提升的电极组件滑动到更换的电介质管中,并且将电极组件与替换的介质管 从其相关联的悬挂装置悬挂到位。
    • 8. 发明授权
    • Method and apparatus for video browsing based on content and structure
    • 基于内容和结构的视频浏览方法和装置
    • US5708767A
    • 1998-01-13
    • US382877
    • 1995-02-03
    • Boon-Lock YeoMinerva M. YeungWayne WolfBede Liu
    • Boon-Lock YeoMinerva M. YeungWayne WolfBede Liu
    • G06F17/30G11B27/28H04N5/14H04N5/445H04N17/06G06T9/00
    • G06F17/30811G06F17/30814G06F17/30852G11B27/28H04N17/06H04N5/147H04N5/445
    • A new technique for extracting a hierarchical decomposition of a complex video selection for browsing purposes, combines visual and temporal information to capture the important relations within a scene and between scenes in a video, thus allowing the analysis of the underlying story structure with no a priori knowledge of the content. A general model of hierarchical scene transition graph is applied to an implementation for browsing. Video shots are first identified and a collection of key frames is used to represent each video segment. These collections are then classified according to gross visual information. A platform is built on which the video is presented as directed graphs to the user, with each category of video shots represented by a node and each edge denoting a temporal relationship between categories. The analysis and processing of video is carried out directly on the compressed videos. Preliminary tests show that the narrative structure of a video selection can be effectively captured using this technique.
    • 一种用于提取用于浏览目的的复杂视频选择的分层分解的新技术,将视觉和时间信息组合以捕获场景内和视频中的场景之间的重要关系,从而允许对先前的基础故事结构进行分析 知识的内容。 分层场景转换图的一般模型应用于浏览的实现。 首先识别视频镜头,并使用关键帧的集合来表示每个视频段。 然后根据总体视觉信息对这些集合进行分类。 建立一个平台,视频以定向图呈现给用户,每个类别的视频镜头由节点表示,每个边缘表示类别之间的时间关系。 视频的分析和处理直接在压缩视频上进行。 初步测试表明,使用这种技术可以有效地捕捉视频选择的叙事结构。
    • 9. 发明授权
    • Integrated ozone generator system
    • 综合臭氧发生器系统
    • US08372345B2
    • 2013-02-12
    • US12806778
    • 2010-08-20
    • Wayne Wolf
    • Wayne Wolf
    • B01J19/08
    • B01J19/088B01J2219/0809B01J2219/083B01J2219/0849B01J2219/0875C01B13/11C01B2201/14C01B2201/62C01B2201/90
    • An ozone generating apparatus includes a base container for holding water, and a head assembly connected to the upper edge of the base container, the head assembly containing a plurality of ozone generating cells each having a dielectric tube and an electrode assembly coaxially disposed within the associated dielectric tube. The dielectric tubes and electrode assemblies are disposed and connected such that the tube and/or electrode assembly of each ozone generating cell can be accessed independently of all other ozone generating cells, and such that the possibility of cascade failure of all remaining ozone generating cells upon failure of a single cell is substantially eliminated. The base container is provided with a process back flood prevention structure to protect the ozone generating cells.
    • 臭氧发生装置包括用于保持水的基底容器和连接到基底容器的上边缘的头部组件,头部组件包含多个臭氧发生电池,每个臭氧发生电池均具有介电管和电极组件,电极组件同轴地设置在相关联的 电介质管。 电介质管和电极组件被布置和连接,使得每个臭氧发生电池的管和/或电极组件可以独立于所有其它臭氧发生电池进行访问,并且使得所有剩余的产生臭氧的电池的级联失效的可能性 基本上消除了单个电池的故障。 基础容器设置有防过程防洪结构,用于保护臭氧发生电池。
    • 10. 发明申请
    • Integrated ozone generator system
    • 综合臭氧发生器系统
    • US20110268621A1
    • 2011-11-03
    • US12806778
    • 2010-08-20
    • Wayne Wolf
    • Wayne Wolf
    • B01J19/08
    • B01J19/088B01J2219/0809B01J2219/083B01J2219/0849B01J2219/0875C01B13/11C01B2201/14C01B2201/62C01B2201/90
    • An ozone generating apparatus includes a base container for holding water, and a head assembly connected to the upper edge of the base container, the head assembly containing a plurality of ozone generating cells each having a dielectric tube and an electrode assembly coaxially disposed within the associated dielectric tube. The dielectric tubes and electrode assemblies are disposed and connected such that the tube and/or electrode assembly of each ozone generating cell can be accessed independently of all other ozone generating cells, and such that the possibility of cascade failure of all remaining ozone generating cells upon failure of a single cell is substantially eliminated. The base container is provided with a process back flood prevention structure to protect the ozone generating cells.
    • 臭氧发生装置包括用于保持水的基底容器和连接到基底容器的上边缘的头部组件,头部组件包含多个臭氧发生电池,每个臭氧发生电池均具有介电管和电极组件,电极组件同轴地设置在相关联的 电介质管。 电介质管和电极组件被布置和连接,使得每个臭氧发生电池的管和/或电极组件可以独立于所有其它臭氧发生电池进行访问,并且使得所有剩余的臭氧发生电池的级联失效的可能性 基本上消除了单个电池的故障。 基础容器设置有防过程防洪结构,用于保护臭氧发生电池。