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    • 2. 发明授权
    • Image capture and buffering in a virtual world using situational measurement averages
    • 使用情境测量平均值的虚拟世界中的图像捕获和缓冲
    • US08022948B2
    • 2011-09-20
    • US12181679
    • 2008-07-29
    • Zachary A. GarbowJim C. ChenRyan K. Cradick
    • Zachary A. GarbowJim C. ChenRyan K. Cradick
    • G06T15/00
    • G03B13/00
    • A technique is disclosed for detecting photo opportunities within a virtual environment. In response to detecting a photo opportunity, images of the virtual environment may be captured from perspectives not limited to the user's viewport. A variety of physiological and virtual world parameters are measured to determine when to capture an image of a user interacting with the virtual environment. To improve the quality of images, these parameters may be individually weighted by factors specified by the user. Captured images may be stored in a temporary buffer space, possibly replacing older images. The user may view the buffer contents and select ideal images to move to a permanent gallery. The user's image selections can in turn be used to further improve the quality of future images.
    • 公开了一种用于在虚拟环境中检测照相机会的技术。 响应于检测到照片机会,可以从不限于用户的视口的观点捕获虚拟环境的图像。 测量各种生理和虚拟世界参数以确定何时捕获与虚拟环境交互的用户的图像。 为了提高图像的质量,这些参数可以由用户指定的因素单独加权。 捕获的图像可以存储在临时缓冲空间中,可能替换旧图像。 用户可以查看缓冲区内容,并选择理想的图像移动到永久库。 用户的图像选择又可以用于进一步提高未来图像的质量。
    • 3. 发明授权
    • Clustering process for software server failure prediction
    • 软件服务器故障预测的聚类过程
    • US07761745B2
    • 2010-07-20
    • US12360063
    • 2009-01-26
    • Zachary A. Garbow
    • Zachary A. Garbow
    • G06F11/00
    • H04L41/147G06F11/008G06F11/0709G06F11/079G06F11/3476H04L43/0817
    • Embodiments of the present invention allow the prevention and/or mitigation of damage caused by server failure by predicting future failures based on historic failures. Statistical data for server parameters may be collected for a period of time immediately preceding a historic server failure. The data may be clustered to identify cluster profiles indicating strong pre-fault clustering patterns. Real time statistics collected during normal operation of the server may be applied to the cluster profiles to determine whether real time statistics show pre-fault clustering. If such a pattern is detected, measures to prevent or mitigate server failure may be initiated.
    • 本发明的实施例允许通过基于历史故障预测未来的故障来预防和/或减轻由服务器故障引起的损害。 服务器参数的统计数据可能会在历史性服务器故障之前的一段时间内收集。 数据可以被聚类以识别指示强的故障前群集模式的群集简档。 在服务器正常运行期间收集的实时统计数据可能会应用于群集配置文件,以确定实时统计信息是否显示故障前群集。 如果检测到这种模式,则可能会启动防止或减轻服务器故障的措施。
    • 5. 发明申请
    • Image Capture and Buffering in a Virtual World
    • 虚拟世界中的图像捕获和缓冲
    • US20100026716A1
    • 2010-02-04
    • US12181713
    • 2008-07-29
    • Zachary A. GarbowJim C. ChenRyan K. Cradick
    • Zachary A. GarbowJim C. ChenRyan K. Cradick
    • G09G5/00
    • A63F13/60A63F13/10A63F13/525A63F2300/535A63F2300/6669
    • A technique is disclosed for detecting photo opportunities within a virtual environment. In response to detecting a photo opportunity, images of the virtual environment may be captured from perspectives not limited to the user's viewport. A variety of physiological and virtual world parameters are measured to determine when to capture an image of a user interacting with the virtual environment. To improve the quality of images, these parameters may be individually weighted by factors specified by the user. Captured images may be stored in a temporary buffer space, possibly replacing older images. The user may view the buffer contents and select ideal images to move to a permanent gallery. The user's image selections can in turn be used to further improve the quality of future images.
    • 公开了一种用于在虚拟环境中检测照相机会的技术。 响应于检测到照片机会,可以从不限于用户的视口的观点捕获虚拟环境的图像。 测量各种生理和虚拟世界参数以确定何时捕获与虚拟环境交互的用户的图像。 为了提高图像的质量,这些参数可以由用户指定的因素单独加权。 捕获的图像可以存储在临时缓冲空间中,可能替换旧图像。 用户可以查看缓冲区内容,并选择理想的图像移动到永久库。 用户的图像选择又可以用于进一步提高未来图像的质量。
    • 7. 发明申请
    • Tracking data processing in an application carried out on a distributed computing system
    • 在分布式计算系统上执行的应用程序中跟踪数据处理
    • US20090300624A1
    • 2009-12-03
    • US12129284
    • 2008-05-29
    • Michael J. BransonZachary A. GarbowJohn M. Santosuosso
    • Michael J. BransonZachary A. GarbowJohn M. Santosuosso
    • G06F9/46
    • G06F17/30445G06F9/5038G06F9/5066G06F2209/506H04L29/06H04L29/08072H04L67/1097Y10S707/99932
    • Methods, systems, and products are disclosed for tracking data processing in an application carried out on a distributed computing system, the distributed computing system including a plurality of computing nodes connected through a data communications network, the application carried out by a plurality of pluggable processing components installed on the plurality of computing nodes, the pluggable processing components including a pluggable processing provider component and a pluggable processing consumer component, that include: identifying, by the provider component, data satisfying predetermined processing criteria, the criteria specifying that the data is relevant to processing provided by the consumer component; passing, by the provider component, the data to the next pluggable processing component in the application for processing, including maintaining access to the data; receiving, by the consumer component, the data during execution of the application; and sending, by the consumer component, a receipt indicating that the consumer component received the data.
    • 公开了用于跟踪在分布式计算系统上执行的应用中的数据处理的方法,系统和产品,所述分布式计算系统包括通过数据通信网络连接的多个计算节点,所述应用由多个可插拔处理 安装在所述多个计算节点上的组件,所述可插拔处理组件包括可插拔处理提供程序组件和可插拔处理用户组件,所述可插入处理组件包括:由所述提供者组件识别满足预定处理标准的数据,所述数据指定所述数据相关 由消费者组件提供的处理; 由提供商组件将数据传递到应用程序中的下一个可插拔处理组件以进行处理,包括维护对数据的访问; 消费者组件在执行应用程序期间接收数据; 并且由消费者组件发送指示消费者组件接收到数据的收据。