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    • 3. 发明申请
    • PHYSICAL OBJECT VISUALIZATION FRAMEWORK FOR COMPUTING DEVICE WITH INTERACTIVE DISPLAY
    • 具有互动显示的计算设备的物理目标可视化框架
    • US20090271727A1
    • 2009-10-29
    • US12109348
    • 2008-04-25
    • Robert LevySundaram RamaniBryan BeattyScot D. Anderson
    • Robert LevySundaram RamaniBryan BeattyScot D. Anderson
    • G06F3/048
    • G06F3/0488G06F3/03G06F3/04817
    • Devices and methods for displaying a visualization graphic on an interactive display are provided. One disclosed device may include an interactive display configured to detect a tag positioned proximate a display surface of the interactive display. The device may further include a processor configured to execute an application program and an application programming interface (API) configured to receive a tag monitoring request from the application program. The tag monitoring request may include application-specific tag visualization settings. The API may be configured to receive a tag tracking message from the interactive display, and in response, send a visualization command to the interactive display. The visualization command may be based upon the application-specific tag visualization settings and may be configured to cause the interactive display to display a visualization graphic proximate the tag.
    • 提供了用于在交互式显示器上显示可视化图形的装置和方法。 一个公开的设备可以包括配置成检测位于交互式显示器的显示表面附近的标签的交互式显示器。 该设备还可以包括被配置为执行应用程序的处理器和被配置为从应用程序接收标签监视请求的应用程序编程接口(API)。 标签监视请求可以包括特定于应用的标签可视化设置。 API可以被配置为从交互式显示器接收标签跟踪消息,并且作为响应,将可视化命令发送到交互式显示器。 可视化命令可以基于特定于应用的标签可视化设置,并且可以被配置为使交互式显示器在标签附近显示可视化图形。
    • 4. 发明授权
    • Physical object visualization framework for computing device with interactive display
    • 具有交互式显示的计算设备的物理对象可视化框架
    • US08621491B2
    • 2013-12-31
    • US12109348
    • 2008-04-25
    • Robert LevySundaram RamaniBryan BeattyScot D. Anderson
    • Robert LevySundaram RamaniBryan BeattyScot D. Anderson
    • G06F3/00G06F9/44G06F9/46
    • G06F3/0488G06F3/03G06F3/04817
    • Devices and methods for displaying a visualization graphic on an interactive display are provided. One disclosed device may include an interactive display configured to detect a tag positioned proximate a display surface of the interactive display. The device may further include a processor configured to execute an application program and an application programming interface (API) configured to receive a tag monitoring request from the application program. The tag monitoring request may include application-specific tag visualization settings. The API may be configured to receive a tag tracking message from the interactive display, and in response, send a visualization command to the interactive display. The visualization command may be based upon the application-specific tag visualization settings and may be configured to cause the interactive display to display a visualization graphic proximate the tag.
    • 提供了用于在交互式显示器上显示可视化图形的装置和方法。 一个公开的设备可以包括配置成检测位于交互式显示器的显示表面附近的标签的交互式显示器。 该设备还可以包括被配置为执行应用程序的处理器和被配置为从应用程序接收标签监视请求的应用程序编程接口(API)。 标签监视请求可以包括特定于应用的标签可视化设置。 API可以被配置为从交互式显示器接收标签跟踪消息,并且作为响应,将可视化命令发送到交互式显示器。 可视化命令可以基于特定于应用的标签可视化设置,并且可以被配置为使得交互式显示器在标签附近显示可视化图形。
    • 8. 发明申请
    • Lossless compression algorithms for spatial data
    • 空间数据的无损压缩算法
    • US20060215923A1
    • 2006-09-28
    • US11090680
    • 2005-03-25
    • Bryan Beatty
    • Bryan Beatty
    • G06K9/00
    • G06T9/00
    • The present invention is related to routines for the processing of quantized vector data into one or more arrays of integers whose values are closer to zero than the integers in the quantized vector data. The arrays are input to a compression engine resulting in compressed bytes of data that may be transferred to a computing device for the decompression of the data. The quantized vector data can include vertices expressed as a pair of integer values that may represent geometric, spatial elements, such as points, interconnected lines (polylines), and polygons. These geometric objects may be representative of information on a map. The compressed bytes may be grouped according to grids, wherein each grid represents a distinct geographic area of a map, so that a consumer can store and decompress only the portion of the map data which is of interest.
    • 本发明涉及用于将量化的向量数据处理成一个或多个整数数组的例程,其数值比量化向量数据中的整数更接近零。 阵列被输入到压缩引擎,导致压缩的数据字节,其可以传送到计算设备以解压缩数据。 量化的矢量数据可以包括表示为可以表示几何,空间元素(例如点,互连线(折线))和多边形的一对整数值的顶点。 这些几何对象可以代表地图上的信息。 压缩字节可以根据网格分组,其中每个网格表示地图的不同的地理区域,使得消费者只能存储和解压缩感兴趣的地图数据的部分。
    • 9. 发明授权
    • Adjustment of range of content displayed on graphical user interface
    • 调整显示在图形用户界面上的内容范围
    • US08352877B2
    • 2013-01-08
    • US12043931
    • 2008-03-06
    • Bryan BeattyBogdan Popp
    • Bryan BeattyBogdan Popp
    • G06F3/048
    • G06F3/04883G06F3/0488G06F2203/04808
    • Various embodiments related to the adjustment of a displayed range of a portion of a content selection are disclosed. In one embodiment, a computing device with an interactive display is configured to display a portion of a content selection and a control associated with the content selection. The control comprises a track and an indicator that indicates a location and a range of the portion of the content selection within the content selection as a whole. A first type of input associated with the control alters the range of the portion of the content selection displayed relative to the content selection as a whole and adjusts an appearance of the indicator, while a second type of touch input associated with the control alters a portion of the content selection displayed and moves the indicator on the track.
    • 公开了与内容选择的一部分的显示范围的调整有关的各种实施例。 在一个实施例中,具有交互式显示器的计算设备被配置为显示内容选择的一部分和与内容选择相关联的控件。 该控件包括轨道和指示符,其指示内容选择中的内容选择的部分的整体的位置和范围。 与控制相关联的第一类型的输入改变了相对于内容选择显示的内容选择的部分的范围,并且调整指示符的外观,而与控件相关联的第二类型的触摸输入改变了一部分 显示的内容选择并将轨迹上的指示符移动。