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    • 43. 发明申请
    • METHOD FOR GLOBALIZING SUPPORT OPERATIONS
    • 全球化支持操作的方法
    • US20090063125A1
    • 2009-03-05
    • US11845907
    • 2007-08-28
    • Alexander FaismanGenady GrabarnikJonathan LenchnerLarisa Shwartz
    • Alexander FaismanGenady GrabarnikJonathan LenchnerLarisa Shwartz
    • G06F17/28
    • G06F17/241G06F17/289
    • Techniques are provided for globalizing handling of service management items. The techniques include obtaining a service management item in a language convenient to a first of two or more actors, translating the service management item into a language-neutral format to obtain a language-neutral service management item, applying one or more annotators to the service management item, translating the language-neutral service management item into a language convenient to a second of two or more actors acting on the service management item, and routing the translated service management item to the second of two or more actors. Techniques are also provided for generating a database of service management items in a language-neutral format.
    • 提供了全球化处理服务管理项目的技术。 这些技术包括以便于两个或多个演员中的第一个的语言获得服务管理项目,将服务管理项目翻译成语言中立的格式以获得语言中立的服务管理项目,将一个或多个注释器应用于服务 管理项目,将语言中立的服务管理项目翻译成对于作用于服务管理项目的两个或多个角色中的第二个的方便的语言,以及将翻译的服务管理项目路由到两个或更多个演员的第二个。 还提供了用于以语言中立格式生成服务管理项目的数据库的技术。
    • 47. 发明授权
    • Location of computing assets within an organization
    • 计算资产在组织内的位置
    • US09170960B2
    • 2015-10-27
    • US13540122
    • 2012-07-02
    • Rajarshi DasMetin FeridunCanturk IsciJonathan LenchnerSuzanne K. McIntoshMichael E. NiddAxel TannerBo Yang
    • Rajarshi DasMetin FeridunCanturk IsciJonathan LenchnerSuzanne K. McIntoshMichael E. NiddAxel TannerBo Yang
    • G06F17/00G06F13/14
    • G06F13/14H05K7/1498
    • Mechanisms are provided for determining the location of computing assets within an organization. These mechanisms determine first location information identifying a location of at least one first physical asset housing in a predetermined physical area of the organization relative to a predetermined coordinate system, and second location information identifying a location of at least one second physical asset housing within the at least one first asset housing. The mechanisms automatically determine third location information identifying a location of at least one computing asset within the at least one second physical asset housing. In addition, the mechanisms generate an asset location map data structure for the organization based on the first, second and third location information. The mechanisms also perform at least one management operation for managing resources of the organization, based on the asset location map data structure for the organization.
    • 提供了确定组织内计算资产位置的机制。 这些机制确定第一位置信息,其识别相对于预定坐标系的组织的预定物理区域中的至少一个第一物理资产外壳的位置,以及第二位置信息,其识别在该位置内的至少一个第二物理资产外壳的位置 至少一个第一资产房屋。 所述机构自动地确定识别所述至少一个第二物理资产外壳内的至少一个计算资产的位置的第三位置信息。 另外,这些机制基于第一,第二和第三位置信息为组织生成资产位置图数据结构。 基于组织的资产位置图数据结构,这些机制还执行用于管理组织的资源的至少一个管理操作。
    • 49. 发明授权
    • Discovery and monitoring of an environment using a plurality of robots
    • 使用多个机器人发现和监测环境
    • US08751043B2
    • 2014-06-10
    • US13616245
    • 2012-09-14
    • Shang Q. GuoCanturk IsciJonathan LenchnerMaharaj Mukherjee
    • Shang Q. GuoCanturk IsciJonathan LenchnerMaharaj Mukherjee
    • G05B19/418G06F17/10
    • G05D1/0291G05B19/41815G05B2219/39146G05B2219/39168G05D1/0274G05D2201/0207G08G1/20
    • Techniques are provided for discovery and monitoring of an environment using a plurality of robots. A plurality of robots navigate an environment by determining a navigation buffer for each of the robots; and allowing each of the robots to navigate within the environment while maintaining a substantially minimum distance from other robots, wherein the substantially minimum distance corresponds to the navigation buffer, and wherein a size of each of the navigation buffers is reduced over time based on a percentage of the environment that remains to be navigated. The robots can also navigate an environment by obtaining a discretization of the environment to a plurality of discrete regions; and determining a next unvisited discrete region for one of the plurality of robots to explore in the exemplary environment using a breadth-first search. The plurality of discrete regions can be, for example, a plurality of real or virtual tiles.
    • 提供了使用多个机器人发现和监测环境的技术。 多个机器人通过为每个机器人确定导航缓冲器来导航环境; 并且允许每个机器人在环境中导航,同时保持与其他机器人基本上最小的距离,其中基本上最小距离对应于导航缓冲器,并且其中每个导航缓冲器的尺寸随时间而减少,基于百分比 的环境仍有待导航。 机器人还可以通过获得对多个离散区域的环境离散度来导航环境; 以及确定所述多个机器人中的一个的下一个未访问离散区域,以在所述示例性环境中使用宽度优先搜索进行探索。 多个离散区域可以是例如多个实际瓦片或虚拟瓦片。
    • 50. 发明申请
    • Sensor Installation in a Building Management System
    • 传感器安装在楼宇管理系统中
    • US20140039685A1
    • 2014-02-06
    • US13562619
    • 2012-07-31
    • Marion L. BlountJeffrey O. KephartJonathan LenchnerIqbal I. Mohomed
    • Marion L. BlountJeffrey O. KephartJonathan LenchnerIqbal I. Mohomed
    • G05B13/00
    • G05B15/02G05B2219/2642G08B25/10
    • A sensor is installed in a building management system by determining a sensor type of the sensor from among a plurality of supported sensor types based on information collected by a mobile device of a user; identifying configuration information required by the building management system for the determined sensor type; obtaining the required configuration information from the user using an interface on the mobile device, wherein at least a portion of the interface is generated to accommodate one or more requirements of the building management system with respect to the determined sensor type; and providing the obtained required configuration information to the building management system. The sensor type and unique identifier of the sensor can be automatically determined. Portions of the required configuration information for the determined sensor type can be automatically populated using default information for the determined sensor type.
    • 传感器通过基于由用户的移动设备收集的信息从多个被支持的传感器类型中确定传感器的传感器类型而安装在建筑物管理系统中; 识别建筑物管理系统为所确定的传感器类型所需的配置信息; 使用所述移动设备上的接口从所述用户获得所需的配置信息,其中,生成所述接口的至少一部分以适应所述建筑物管理系统相对于所确定的传感器类型的一个或多个要求; 并将获得的所需配置信息提供给建筑物管理系统。 可以自动确定传感器的传感器类型和唯一标识符。 可以使用所确定的传感器类型的默认信息自动填充所确定的传感器类型所需配置信息的部分。