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    • 1. 发明授权
    • System and method for generic application of location determination for network attached devices
    • 用于网络连接设备的位置确定的通用应用的系统和方法
    • US08239483B2
    • 2012-08-07
    • US12404944
    • 2009-03-16
    • Martin Wyville ThomsonAnthony James WinterbottomGary Neil Justusson
    • Martin Wyville ThomsonAnthony James WinterbottomGary Neil Justusson
    • G06F15/16H04W24/00
    • H04W4/04H04L67/18
    • A system and method for determining the location of a target device. A location request may be received for a target device, and a plurality of parameters determined that identify the target device. A most likely path may be selected from a plurality of paths to produce a location of the target device, each path having one or more of the plural determined parameters as an input and one or more measurement results as an output. Measurement information may be collected on the most likely path as a function of one or more of the determined parameters to provide the one or more measurement results. Location information may then be derived for the target device as a function of the one or more measurement results, the derivation utilizing a location determination function that evaluates ones of the plural paths. An estimated location of the target device may then be determined as a function of the respective location information for the selected path.
    • 一种用于确定目标设备的位置的系统和方法。 可以为目标设备接收位置请求,并且确定识别目标设备的多个参数。 可以从多个路径中选择最可能的路径以产生目标设备的位置,每个路径具有多个确定的参数中的一个或多个作为输入,以及一个或多个测量结果作为输出。 测量信息可以作为一个或多个确定参数的函数在最可能的路径上收集以提供一个或多个测量结果。 然后可以根据一个或多个测量结果为目标设备导出位置信息,利用评估多个路径中的一个的位置确定功能的推导。 然后可以根据所选路径的相应位置信息来确定目标设备的估计位置。
    • 9. 发明申请
    • DETECTING AND COMPENSATING FOR ERRONEOUS TIME MEASUREMENT FOR MOBILE DEVICE POSITION CALCULATION
    • 用于移动设备位置计算的错误时间测量的检测和补偿
    • US20110169691A1
    • 2011-07-14
    • US12815640
    • 2010-06-15
    • Martin Wyville ThomsonNeil Lindsay Harper
    • Martin Wyville ThomsonNeil Lindsay Harper
    • G01S19/05
    • G01S19/09G01S19/06
    • A method implemented by an assisted Global Navigation Satellite System (GNSS) server determines a position of a GNSS receiver. The method includes sending a request for measurement information to the GNSS receiver at a first time and receiving the measurement information from the GNSS receiver in response to the request at a second time, where the measurement information includes position measurement data and a corresponding measured time based on satellite signals received by the GNSS receiver. The measured time is determined to be erroneous when it is outside an accurate time range determined based on at least one of the first time and the second time. A substitute time is identified and the position of the GNSS receiver is determined based on the substitute time when the measured time is erroneous.
    • 由辅助全球导航卫星系统(GNSS)服务器实现的方法确定GNSS接收机的位置。 该方法包括在第一时间向GNSS接收器发送测量信息请求,并且响应于第二时间的请求从GNSS接收器接收测量信息,其中测量信息包括位置测量数据和对应的测量时间 在GNSS接收机接收的卫星信号上。 当测量时间超出基于第一时间和第二时间中的至少一个确定的准确时间范围时,被测量的时间被确定为错误的。 识别替代时间,并根据测量时间错误时的替代时间来确定GNSS接收机的位置。