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    • 5. 发明申请
    • METHODS AND APPARATUS FOR INTELLIGENT EXPLORATORY VISUALIZATION AND ANALYSIS
    • 智能探测和分析的方法和装置
    • US20100205238A1
    • 2010-08-12
    • US12367132
    • 2009-02-06
    • Nan CaoDavid H. GotzPeter KissaShi Xia LiuJie LuWei Hong QianZhen WenMichelle Zhou
    • Nan CaoDavid H. GotzPeter KissaShi Xia LiuJie LuWei Hong QianZhen WenMichelle Zhou
    • G06F15/16G06F17/30
    • G06Q10/10G06Q10/06
    • Methods and apparatus are provided for intelligent exploratory visualization and analysis. A semantics-based client-server application architecture is provided that enables interactive visualization and analysis applications over the web. From the client perspective, user activities are observed and the client determines if a sequence of user activities comprises one or more predefined semantics-based user actions. Semantics-based action descriptor are then sent to the server, optionally with any related parameters, and a response is then received from the server. From the server perspective, one or more semantics-based action descriptors are received from the client with an action type selected from a predefined set of types, wherein the semantics-based action descriptors are based on a sequence of activities of a user. The server processes the semantics-based action descriptors and sends a response to the client in response to the one or more semantics-based action descriptors.
    • 提供了智能探索可视化和分析的方法和设备。 提供了一种基于语义的客户机 - 服务器应用程序体系结构,可通过Web进行交互式可视化和分析应用程序。 从客户端的角度来看,观察用户活动,并且客户端确定用户活动的序列是否包含一个或多个预定义的基于语义的用户动作。 然后将基于语义的动作描述符发送到服务器,可选地具有任何相关参数,然后从服务器接收响应。 从服务器的角度来看,从客户端接收从预定义的一组类型中选择的动作类型的一个或多个基于语义的动作描述符,其中基于语义的动作描述符基于用户的一系列活动。 服务器处理基于语义的动作描述符,并响应于一个或多个基于语义的动作描述符向客户端发送响应。
    • 6. 发明授权
    • Using self-adjustable three-dimensional matrix to simplify the construction of a complex 3D scene
    • 使用自调三维矩阵简化复杂3D场景的构建
    • US07522164B2
    • 2009-04-21
    • US11390688
    • 2006-03-28
    • Peter Kissa
    • Peter Kissa
    • G06T17/00
    • G06T19/20A63F2300/6018G06T2219/2004G06T2219/2021
    • The aspects of the present invention provide for a computer implemented method, apparatus, and computer usable program code for adding a new virtual object into a virtual scene having at least one existing virtual object. An exemplary computer-implemented method includes calculating the dimensions for each cell in a matrix that defines the virtual scene. The dimensions used to fit a largest retained virtual object are propagated along all dimensions of the matrix, wherein the largest retained virtual object is a virtual object selected from the group consisting of the new virtual object and an object from at least one of the existing virtual objects, thereby adjusting the dimensions of the matrix to form a modified matrix. All the existing virtual objects, including the new one, are properly positioned within the modified matrix.
    • 本发明的方面提供了一种用于将新的虚拟对象添加到具有至少一个现有虚拟对象的虚拟场景中的计算机实现的方法,装置和计算机可用程序代码。 示例性的计算机实现的方法包括计算定义虚拟场景的矩阵中的每个小区的维度。 用于装配最大的保留的虚拟对象的尺寸沿矩阵的所有维度传播,其中最大的保留的虚拟对象是从包括新的虚拟对象和来自现有虚拟的至少一个的对象的组中选择的虚拟对象 从而调整矩阵的尺寸以形成修改的矩阵。 所有现有的虚拟对象(包括新的虚拟对象)都被正确地定位在修改后的矩阵中。
    • 9. 发明申请
    • Using self-adjustable three-dimensional matrix to simplify the construction of a complex 3D scene
    • 使用自调三维矩阵简化复杂3D场景的构建
    • US20070229550A1
    • 2007-10-04
    • US11390688
    • 2006-03-28
    • Peter Kissa
    • Peter Kissa
    • G09G5/00
    • G06T19/20A63F2300/6018G06T2219/2004G06T2219/2021
    • The aspects of the present invention provide for a computer implemented method, apparatus, and computer usable program code for adding a new virtual object into a virtual scene having at least one existing virtual object. An exemplary computer-implemented method includes calculating the dimensions for each cell in a matrix that defines the virtual scene. The dimensions used to fit a largest retained virtual object are propagated along all dimensions of the matrix, wherein the largest retained virtual object is a virtual object selected from the group consisting of the new virtual object and an object from at least one of the existing virtual objects, thereby adjusting the dimensions of the matrix to form a modified matrix. All the existing virtual objects, including the new one, are properly positioned within the modified matrix.
    • 本发明的方面提供了一种用于将新的虚拟对象添加到具有至少一个现有虚拟对象的虚拟场景中的计算机实现的方法,装置和计算机可用程序代码。 示例性的计算机实现的方法包括计算定义虚拟场景的矩阵中的每个小区的维度。 用于装配最大的保留的虚拟对象的尺寸沿矩阵的所有维度传播,其中最大的保留的虚拟对象是从包括新的虚拟对象和来自现有虚拟的至少一个的对象的组中选择的虚拟对象 从而调整矩阵的尺寸以形成修改的矩阵。 所有现有的虚拟对象(包括新的虚拟对象)都被正确地定位在修改后的矩阵中。
    • 10. 发明授权
    • Automatic visual preview of non-visual data
    • 自动视觉预览非视觉数据
    • US08996984B2
    • 2015-03-31
    • US12769952
    • 2010-04-29
    • Peter KissaZhen WenQiang Zhang
    • Peter KissaZhen WenQiang Zhang
    • G06F3/048G06Q10/10
    • G06Q10/10
    • Methods and systems are provided for automatic visual preview of non-visual data. A visual preview of non-visual data is generated by obtaining the non-visual data; obtaining metadata describing one or more semantic data types in the obtained non-visual data; selecting one or more visual metaphors for the obtained non-visual data based on the metadata; and generating the visual preview of the non-visual data using the one or more selected visual metaphors. As used herein, non-visual data does not have an established automatic method for generating a preview of the non-visual data. A user can optionally interact with the visual preview.
    • 提供了用于自动视觉预览非视觉数据的方法和系统。 通过获取非视觉数据生成非视觉数据的视觉预览; 获取描述所获得的非视觉数据中的一种或多种语义数据类型的元数据; 基于所述元数据为所获得的非可视数据选择一个或多个视觉隐喻; 以及使用所述一个或多个所选视觉隐喻生成所述非视觉数据的视觉预览。 如本文所使用的,非可视数据没有用于生成非可视数据的预览的已建立的自动方法。 用户可以选择与视觉预览进行交互。