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    • 6. 发明授权
    • Portable encoded information reading terminal configured to locate groups of RFID tags
    • 便携式编码信息读取终端被配置为定位RFID标签组
    • US09443119B2
    • 2016-09-13
    • US13451761
    • 2012-04-20
    • Philip Zumsteg
    • Philip Zumsteg
    • G06K7/10
    • G06K7/10099G06K7/10079G06Q10/087G06T11/60
    • A portable radio-frequency identifier (RFID) reading terminal can comprise a microprocessor, a memory, an RFID reading device, and a display. The portable EIR terminal can be configured, responsive to successfully reading a plurality of RFID tags attached to a plurality of items sustained by a physical structure, to group the plurality of read RFID tags into zero or more clusters, by correlating quantities of RFID tags read within several time periods to spatial positions of the coverage shapes of the RF signals transmitted by the RFID reading device during the several time periods. The EIR terminal can be further configured to determine the spatial positions of the RFID signal coverage shapes based on the spatial positions and orientations of the portable EIR terminal during the several time periods. The EIR terminal can be further configured to display a quantity of RFID tags within each cluster overlaid over an image.
    • 便携式射频标识符(RFID)读取终端可以包括微处理器,存储器,RFID读取装置和显示器。 便携式EIR终端可以被配置成响应于成功读取附接到由物理结构维持的多个项目的多个RFID标签,通过将读取的RFID标签的数量相关联来将多个读取的RFID标签分组成零个或多个簇 在几个时间段内由RFID读取装置在几个时间段期间发送的RF信号的覆盖形状的空间位置。 EIR终端还可以被配置为基于在几个时间段期间便携式EIR终端的空间位置和取向来确定RFID信号覆盖形状的空间位置。 EIR终端还可以被配置为在每个聚集在图像上的簇中显示数量的RFID标签。
    • 7. 发明申请
    • PORTABLE ENCODED INFORMATION READING TERMINAL CONFIGURED TO LOCATE GROUPS OF RFID TAGS
    • 便携式编码信息读取终端配置定位RFID标签组
    • US20130278393A1
    • 2013-10-24
    • US13451761
    • 2012-04-20
    • Philip Zumsteg
    • Philip Zumsteg
    • G06K7/01
    • G06K7/10099G06K7/10079G06Q10/087G06T11/60
    • A portable radio-frequency identifier (RFID) reading terminal can comprise a microprocessor, a memory, an RFID reading device, and a display. The portable EIR terminal can be configured, responsive to successfully reading a plurality of RFID tags attached to a plurality of items sustained by a physical structure, to group the plurality of read RFID tags into zero or more clusters, by correlating quantities of RFID tags read within several time periods to spatial positions of the coverage shapes of the RF signals transmitted by the RFID reading device during the several time periods. The EIR terminal can be further configured to determine the spatial positions of the RFID signal coverage shapes based on the spatial positions and orientations of the portable EIR terminal during the several time periods. The EIR terminal can be further configured to display a quantity of RFID tags within each cluster overlaid over an image.
    • 便携式射频标识符(RFID)读取终端可以包括微处理器,存储器,RFID读取装置和显示器。 便携式EIR终端可以被配置成响应于成功读取附接到由物理结构维持的多个项目的多个RFID标签,通过将读取的RFID标签的数量相关联来将多个读取的RFID标签分组成零个或多个簇 在几个时间段内由RFID读取装置在几个时间段期间发送的RF信号的覆盖形状的空间位置。 EIR终端还可以被配置为基于在几个时间段期间便携式EIR终端的空间位置和取向来确定RFID信号覆盖形状的空间位置。 EIR终端还可以被配置为在每个聚集在图像上的簇中显示数量的RFID标签。
    • 8. 发明授权
    • System and method for calibration and mapping of real-time location data
    • 用于校准和映射实时位置数据的系统和方法
    • US08727225B2
    • 2014-05-20
    • US13452133
    • 2012-04-20
    • Philip ZumstegTom PlocherSriharsha PutrevuJoseph Vargas
    • Philip ZumstegTom PlocherSriharsha PutrevuJoseph Vargas
    • G06K19/06
    • G06Q10/087G06K7/10009G06K7/10712
    • A method of mapping the location of at least one object in three dimensional space, relative to an initial point in three dimensional space by an EIR terminal which contains a microprocessor, memory, a scanning device, a motion sensing device, and a communication interface. The method includes scanning a signal of decodable indicia located at a pre-defined area of a physical object, locating the decodable indicia within this signal, decoding the decodable indicia into a decoded message. The decoded message is an identifier for said physical object, which is then displayed. After receiving an interface command, the EIR terminal is placed in mechanical contact with the pre-defined area of the physical object and a first spatial position is stored as a point of origin in the EIR terminal.
    • 一种通过包含微处理器,存储器,扫描装置,运动感测装置和通信接口的EIR终端相对于三维空间中的初始点在三维空间中映射至少一个对象的位置的方法。 该方法包括扫描位于物理对象的预定义区域的可解码标记的信号,将可解码标记定位在该信号内,将可解码标记解码为解码消息。 解码的消息是所述物理对象的标识符,然后显示。 在接收到接口命令后,EIR终端与物理对象的预定义区域机械接触,第一个空间位置作为原点存储在EIR终端中。
    • 10. 发明申请
    • AUTOMATIC ASSOCIATION OF WIRELESS DEVICES TO POINT NAMES
    • 将无线设备自动关联到点名称
    • US20110237197A1
    • 2011-09-29
    • US12730335
    • 2010-03-24
    • Philip ZumstegPatrick S. Gonia
    • Philip ZumstegPatrick S. Gonia
    • H04B17/00
    • G01S5/021G01S5/0242G01S5/0289G01S5/14
    • A system and method automatically associate wireless devices to point names. An installation plan indicates that wireless devices are installed at designated locations. Each designated location in the installation plan includes an associated point name, each wireless device is configured to transmit a message indicating itself as the source of the message, and each wireless communication device is installed proximate to its designated location. Expected distances are determined between one or more pairs of designated locations on the installation plan. Range estimate data is gathered from the installed wireless devices for one or more pairs of the installed wireless devices. A unique identifier within a signal transmitted by one of the installed wireless devices is associated with a corresponding point name on the installation plan. The association is determined at least in part by the expected distances and the range estimate data.
    • 系统和方法自动将无线设备与点名称相关联。 安装计划表明无线设备安装在指定位置。 安装计划中的每个指定位置包括相关联的点名称,每个无线设备被配置为发送指示自身作为消息的源的消息,并且每个无线通信设备安装在其指定位置附近。 在安装计划中的一对或多对指定位置之间确定预期距离。 从安装的无线设备收集一个或多对安装的无线设备的范围估计数据。 由安装的无线设备之一发送的信号内的唯一标识符与安装计划上的对应点名称相关联。 该关联至少部分地由预期距离和距离估计数据确定。