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    • 7. 发明申请
    • SYSTEM AND METHOD FOR CONCURRENTLY DETERMINING LOCATIONS OF MOBILE DEVICE IN WIRELESS COMMUNICATION NETWORK
    • 在无线通信网络中同时确定移动设备的位置的系统和方法
    • US20160282475A1
    • 2016-09-29
    • US15177109
    • 2016-06-08
    • TELECOMMUNICATION SYSTEMS, INC.
    • Neil HARPERMartin DAWSON
    • G01S19/46G01S19/12
    • G01S19/46G01S19/12H04W36/385
    • A method for a mobile location center (MLC) to determine a location of a mobile device in a wireless communication network includes receiving a request to determine the location of the mobile device; concurrently requesting global navigation satellite system (GNSS) measurements from the mobile device and terrestrial measurements from transceivers in the wireless communication network, and receiving the GNSS measurements and at least one of the terrestrial measurements. A GNSS location of the mobile device is calculated as a function of the GNSS measurements, and the calculated GNSS location is determined to be the location of the mobile device when the calculated GNSS location meets a predetermined accuracy threshold. A terrestrial location of the mobile device is calculated as a function of the terrestrial measurements, and the calculated terrestrial location is determined to be the location of the mobile device when the calculated terrestrial location meets the predetermined accuracy threshold.
    • 用于确定移动设备在无线通信网络中的位置的移动定位中心(MLC)的方法包括接收确定移动设备的位置的请求; 同时请求来自移动设备的全球导航卫星系统(GNSS)测量和来自无线通信网络中的收发器的地面测量,以及接收GNSS测量和至少一个地面测量。 作为GNSS测量的函数计算移动设备的GNSS位置,并且当所计算的GNSS位置满足预定精度阈值时,将所计算的GNSS位置确定为移动设备的位置。 作为地面测量的函数计算移动设备的地面位置,并且当所计算的地面位置满足预定精度阈值时,所计算的地面位置被确定为移动设备的位置。
    • 8. 发明授权
    • Method and system for determining position using a satellite system
    • 使用卫星系统确定位置的方法和系统
    • US09134424B2
    • 2015-09-15
    • US13313171
    • 2011-12-07
    • Andrei KosolobovDavid Albert LundgrenSteven Malkos
    • Andrei KosolobovDavid Albert LundgrenSteven Malkos
    • G01S19/05G01S19/12G01S19/48
    • G01S19/05G01S19/12G01S19/48
    • A GNSS enabled handset receives signals from different resources comprising GNSS satellites and/or from a wireless network. The GNSS enabled handset acquires location information comprising various positioning resource data comprising GPS data and/or WiFi data from the received signals. The GNSS enabled handset calculates a plurality of possible position fixes based on the acquired location information using various positioning approaches. A current position fix associated with the GNSS enabled handset is determined based on the plurality of calculated possible position fixes via running a location-based service (LBS) client on the GNSS enabled handset. The LBS client determines the plurality of possible position fixes using various positioning approaches in a particular or determined order. Confidence levels for each of the calculated plurality of possible positions are determined and used to refine the current position fix. The refined current position fix is used for a location-based service from a LBS application server.
    • 支持GNSS的手机从包括GNSS卫星和/或来自无线网络的不同资源接收信号。 支持GNSS的手持机从接收到的信号中获取包括包括GPS数据和/或WiFi数据的各种定位资源数据的位置信息。 支持GNSS的手机使用各种定位方法基于所获取的位置信息来计算多个可能的位置定位。 通过运行支持GNSS的手持机上的基于位置的服务(LBS)客户端,基于多个计算的可能的位置锁定来确定与支持GNSS的手机相关联的当前位置固定。 LBS客户端以特定或确定的顺序使用各种定位方法确定多个可能的位置定位。 确定所计算的多个可能位置中的每一个的置信水平,并用于细化当前的位置定位。 精简的当前位置修复程序用于来自LBS应用程序服务器的基于位置的服务。
    • 10. 发明申请
    • HANDHELD GLOBAL POSITIONING SYSTEM DEVICE
    • 手持式全球定位系统装置
    • US20120188122A1
    • 2012-07-26
    • US13353220
    • 2012-01-18
    • Javad AshjaeeLev B. RapoportMikhail GribkovAlexander Gribkov
    • Javad AshjaeeLev B. RapoportMikhail GribkovAlexander Gribkov
    • G01S19/12
    • G01S19/43G01C11/00G01S5/16G01S19/47
    • A handheld GNSS device includes a housing, handgrips integral to the housing for enabling a user to hold the device, and a display screen integral with the housing. The device has a GNSS antenna and a communication antenna, both integral with the housing. The GNSS antenna receives position data from GNSS satellites. The communication antenna receives positioning assistance data from a base station. The GNSS antenna has a first antenna pattern, and the communication antenna has a second antenna pattern. The first and second antenna patterns are substantially separated. Coupled to the GNSS antenna, within the housing, is at least one receiver. Further, the device includes, within the housing, orientation circuitry for generating orientation data, imaging circuitry for obtaining image data, and positioning circuitry for determining a position for the point of interest based on the position data, the positioning assistance data, the orientation data, and the image data.
    • 手持GNSS装置包括壳体,与壳体一体的手柄,用于使用户能够握持装置,以及与壳体一体的显示屏。 该设备具有GNSS天线和与壳体一体的通信天线。 GNSS天线从GNSS卫星接收位置数据。 通信天线从基站接收定位辅助数据。 GNSS天线具有第一天线方向图,并且通信天线具有第二天线方向图。 第一和第二天线图案基本分离。 耦合到GNSS天线,在壳体内,是至少一个接收器。 此外,该设备在壳体内包括用于产生取向数据的定向电路,用于获得图像数据的成像电路和用于基于位置数据,定位辅助数据,定位数据确定兴趣点的位置的定位电路 ,和图像数据。