Entity Display Priority in a Distributed Geographic Information System
    2.
    发明申请
    Entity Display Priority in a Distributed Geographic Information System 有权
    分布式地理信息系统中的实体显示优先级

    公开(公告)号:US20140089052A1

    公开(公告)日:2014-03-27

    申请号:US14089755

    申请日:2013-11-26

    Applicant: Google Inc.

    Abstract: A system for ranking geospatial entities is described. In one embodiment, the system comprises an interface for receiving ranking data about a plurality of geospatial entities and an entity ranking module. The module uses a ranking mechanism to generate place ranks for the geospatial entities based on the ranking data. Ranked entity data generated by the entity ranking module is stored in a database. The entity ranking module may be configured to evaluate a plurality of diverse attributes to determine a total score for a geospatial entity. The entity ranking module may be configured to organize ranked entity data into placemark layers.

    Abstract translation: 描述了一种用于排列地理空间实体的系统。 在一个实施例中,系统包括用于接收关于多个地理空间实体和实体排名模块的排名数据的接口。 该模块使用排名机制根据排名数据为地理空间实体产生地位。 由实体排名模块生成的排名实体数据存储在数据库中。 实体排名模块可以被配置为评估多个不同属性以确定地理空间实体的总分。 实体排名模块可以被配置为将排名的实体数据组织成地标层。

    Intelligent Distributed Geographic Information System

    公开(公告)号:US20170103081A1

    公开(公告)日:2017-04-13

    申请号:US15295935

    申请日:2016-10-17

    Applicant: GOOGLE INC.

    Abstract: Interactive geographic information systems (GIS) and techniques are disclosed that provide users with a greater degree of flexibility, utility, and information. A markup language is provided that facilitates communication between servers and clients of the interactive GIS, which enables a number of GIS features, such as network links (time-based and/or view-dependent dynamic data layers), ground overlays, screen overlays, placemarks, 3D models, and stylized GIS elements, such as geometry, icons, description balloons, polygons, and labels in the viewer by which the user sees the target area. Also, “virtual tours” of user-defined paths in the context of distributed geospatial visualization is enabled. Streaming and interactive visualization of filled polygon data are also enabled thereby allowing buildings and other such features to be provided in 3D. Also, techniques for enabling ambiguous search requests in a GIS are provided.

    Entity Display Priority in a Distributed Geographic Information System
    6.
    发明申请
    Entity Display Priority in a Distributed Geographic Information System 有权
    分布式地理信息系统中的实体显示优先级

    公开(公告)号:US20150169588A1

    公开(公告)日:2015-06-18

    申请号:US14629086

    申请日:2015-02-23

    Applicant: Google Inc.

    Abstract: A system for ranking geospatial entities is described. In one embodiment, the system comprises an interface for receiving ranking data about a plurality of geospatial entities and an entity ranking module. The module uses a ranking mechanism to generate place ranks for the geospatial entities based on the ranking data. Ranked entity data generated by the entity ranking module is stored in a database. The entity ranking module may be configured to evaluate a plurality of diverse attributes to determine a total score for a geospatial entity. The entity ranking module may be configured to organize ranked entity data into placemark layers.

    Abstract translation: 描述了一种用于排列地理空间实体的系统。 在一个实施例中,系统包括用于接收关于多个地理空间实体和实体排名模块的排名数据的接口。 该模块使用排名机制根据排名数据为地理空间实体产生地位。 由实体排名模块生成的排名实体数据存储在数据库中。 实体排名模块可以被配置为评估多个不同属性以确定地理空间实体的总分。 实体排名模块可以被配置为将排名的实体数据组织成地标层。

    Entity display priority in a distributed geographic information system
    7.
    发明授权
    Entity display priority in a distributed geographic information system 有权
    实体在分布式地理信息系统中显示优先级

    公开(公告)号:US08965884B2

    公开(公告)日:2015-02-24

    申请号:US14089755

    申请日:2013-11-26

    Applicant: Google Inc.

    Abstract: A system for ranking geospatial entities is described. In one embodiment, the system comprises an interface for receiving ranking data about a plurality of geospatial entities and an entity ranking module. The module uses a ranking mechanism to generate place ranks for the geospatial entities based on the ranking data. Ranked entity data generated by the entity ranking module is stored in a database. The entity ranking module may be configured to evaluate a plurality of diverse attributes to determine a total score for a geospatial entity. The entity ranking module may be configured to organize ranked entity data into placemark layers.

    Abstract translation: 描述了一种用于排列地理空间实体的系统。 在一个实施例中,系统包括用于接收关于多个地理空间实体和实体排名模块的排名数据的接口。 该模块使用排名机制根据排名数据为地理空间实体产生地位。 由实体排名模块生成的排名实体数据存储在数据库中。 实体排名模块可以被配置为评估多个不同属性以确定地理空间实体的总分。 实体排名模块可以被配置为将排名的实体数据组织成地标层。

    Dynamic view-based data layer in a geographic information system
    10.
    发明授权
    Dynamic view-based data layer in a geographic information system 有权
    地理信息系统中基于动态视图的数据层

    公开(公告)号:US09471625B2

    公开(公告)日:2016-10-18

    申请号:US13736808

    申请日:2013-01-08

    Applicant: GOOGLE INC.

    Abstract: Interactive geographic information systems (GIS) and techniques are disclosed that provide users with a greater degree of flexibility, utility, and information. A markup language is provided that facilitates communication between servers and clients of the interactive GIS, which enables a number of GIS features, such as network links (time-based and/or view-dependent dynamic data layers), ground overlays, screen overlays, placemarks, 3D models, and stylized GIS elements, such as geometry, icons, description balloons, polygons, and labels in the viewer by which the user sees the target area. Also, “virtual tours” of user-defined paths in the context of distributed geospatial visualization is enabled. Streaming and interactive visualization of filled polygon data are also enabled thereby allowing buildings and other such features to be provided in 3D. Also, techniques for enabling ambiguous search requests in a GIS are provided.

    Abstract translation: 公开了交互式地理信息系统(GIS)和技术,为用户提供更大程度的灵活性,效用和信息。 提供了一种标记语言,其有助于交互式GIS的服务器和客户端之间的通信,其实现了许多GIS特征,诸如网络链接(基于时间和/或视图的动态数据层),地面覆盖,屏幕叠加, 地标,3D模型和风格化的GIS元素,例如用户看到目标区域的观察者中的几何图标,图标,描述气球,多边形和标签。 此外,在分布式地理空间可视化的上下文中启用了用户定义路径的“虚拟旅程”。 填充的多边形数据的流式和交互式可视化也被启用,从而允许建筑物和其他此类特征以3D形式提供。 此外,提供了用于在GIS中实现模糊搜索请求的技术。

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