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    • 3. 发明申请
    • Femto-Cell Location by Direct Methods
    • 通过直接方法的毫微微小区位置
    • US20100120447A1
    • 2010-05-13
    • US12268989
    • 2008-11-11
    • Robert J. AndersonRashidus S. MiaMatthew L. Ward
    • Robert J. AndersonRashidus S. MiaMatthew L. Ward
    • H04W64/00
    • H04W64/003G01S5/0242H04W84/045
    • Illustrative embodiments of the inventive subject matter described herein include, but are not limited to, the following: a femto-cell device, methods for use by a wireless location system (WLS) in locating a femto-cell device, and a wireless location system having certain features relating to the location of femto-cell devices. A femto-cell device used in a wireless communications system (WCS) includes a location subsystem configured to acquire information identifying the geographic location of the femto-cell device. The device also includes an antenna subsystem, a radio frequency (RF) block coupled to the antenna subsystem, a baseband block coupled to the RF block, and a communications block coupled to the baseband block. In addition, the device is configured to communicate with the WCS, including communicating at least some of the location information to the WCS.
    • 本文描述的本发明主题的说明性实施例包括但不限于以下:毫微微小区设备,无线定位系统(WLS)在定位毫微微小区设备时使用的方法,以及无线定位系统 具有与毫微微小区设备的位置相关的某些特征。 在无线通信系统(WCS)中使用的毫微微小区设备包括被配置为获取识别毫微微小区设备的地理位置的信息的位置子系统。 该设备还包括天线子系统,耦合到天线子系统的射频(RF)块,耦合到RF块的基带块以及耦合到基带块的通信块。 另外,该设备被配置为与WCS通信,包括将至少一些位置信息传送到WCS。
    • 8. 发明授权
    • Femto-cell location by direct methods
    • 通过直接方式进行毫微微小区定位
    • US08180368B2
    • 2012-05-15
    • US12268989
    • 2008-11-11
    • Robert J. AndersonRashidus S. MiaMatthew L. Ward
    • Robert J. AndersonRashidus S. MiaMatthew L. Ward
    • H04W24/00H04W36/00H04W40/00H04M11/04
    • H04W64/003G01S5/0242H04W84/045
    • Illustrative embodiments of the inventive subject matter described herein include, but are not limited to, the following: a femto-cell device, methods for use by a wireless location system (WLS) in locating a femto-cell device, and a wireless location system having certain features relating to the location of femto-cell devices. A femto-cell device used in a wireless communications system (WCS) includes a location subsystem configured to acquire information identifying the geographic location of the femto-cell device. The device also includes an antenna subsystem, a radio frequency (RF) block coupled to the antenna subsystem, a baseband block coupled to the RF block, and a communications block coupled to the baseband block. In addition, the device is configured to communicate with the WCS, including communicating at least some of the location information to the WCS.
    • 本文描述的本发明主题的说明性实施例包括但不限于以下:毫微微小区设备,无线定位系统(WLS)在定位毫微微小区设备时使用的方法,以及无线定位系统 具有与毫微微小区设备的位置相关的某些特征。 在无线通信系统(WCS)中使用的毫微微小区设备包括被配置为获取识别毫微微小区设备的地理位置的信息的位置子系统。 该设备还包括天线子系统,耦合到天线子系统的射频(RF)块,耦合到RF块的基带块以及耦合到基带块的通信块。 另外,该设备被配置为与WCS通信,包括将至少一些位置信息传送到WCS。
    • 10. 发明授权
    • Subscriber selective, area-based service control
    • 用户选择性,基于区域的服务控制
    • US08463297B2
    • 2013-06-11
    • US11965481
    • 2007-12-27
    • Jeffrey F. BullMatthew L. Ward
    • Jeffrey F. BullMatthew L. Ward
    • H04W24/00H04M11/04H04M3/493H04M1/00H04B7/00
    • H04W48/04H04W4/021
    • A method for use in controlling a mobile device's access to one or more wireless communications networks (WCNs) with an overlaid wireless location system (WLS) includes monitoring a set of one or more predefined signaling links of at least one WCN, and detecting an event associated with the mobile device. Next, using a low-accuracy location function of the WLS, the system determines that the mobile device is within a defined area of interest and is potentially within a defined quiet zone. Next, using a high-accuracy location function of the WLS, the system determines a precise geographic location of the mobile device and based thereon confirms that the mobile device is within the quiet zone or at least within an area of ambiguity around the quiet zone. Finally, the mobile device's access to the wireless communications network is limited, e.g., according to a pre-defined rule established by the carrier. This approach allows finer definition of the fenced area while also minimizing the load on the high-accuracy location function. The proximity threshold is preferably based on the accuracy of the underlying location technology.
    • 一种用于控制移动设备对具有覆盖的无线定位系统(WLS)的一个或多个无线通信网络(WCN)的访问的方法包括监视至少一个WCN的一个或多个预定信令链路的集合,并且检测事件 与移动设备相关联。 接下来,使用WLS的低精度定位功能,系统确定移动设备在定义的感兴趣区域内并且潜在地在定义的安静区域内。 接下来,使用WLS的高精度位置功能,系统确定移动设备的精确地理位置,并且基于此确认移动设备在安静区域内或至少在安静区域周围的模糊区域内。 最后,移动设备对无线通信网络的访问受到限制,例如,根据由载体建立的预定义规则。 这种方法可以更精细地定义围栏区域,同时最大限度地降低高精度定位功能的负担。 接近阈值优选地基于底层定位技术的准确性。