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    • 1. 发明授权
    • Wireless remote telemetry system
    • 无线远程遥测系统
    • US5748104A
    • 1998-05-05
    • US682819
    • 1996-07-11
    • Panayotis ArgyroudisGwain BayleyMatthew S. GrobMarc PhillipsSamir S. Soliman
    • Panayotis ArgyroudisGwain BayleyMatthew S. GrobMarc PhillipsSamir S. Soliman
    • G08C17/02H04Q7/38G08C19/04
    • G08C17/02H04Q9/00H04Q2209/50H04Q2209/60
    • A wireless remote telemetry system which uses low-cost remote communication devices operating on existing wireless communication systems in order to provide real-time reading and control of remote devices. In an embodiment applicable to utility service, consumption of electrical power among a population of customers is measured by a utility metering system having a wireless communication capability. The metering system comprises a remote metering unit which communicates with a central controller over existing wireless communication systems, such as cellular base stations, using existing communication standards. The remote metering unit transmits various messages over a shared random access channel to a central controller. The central controller transmits messages to the remote metering unit over a paging channel. The remote metering unit may operate in a half-duplex mode only. Furthermore, the remote metering unit may provide a gateway to advanced consumer services at the remote location.
    • 一种无线远程遥测系统,其使用在现有无线通信系统上操作的低成本远程通信设备,以便提供远程设备的实时读取和控制。 在适用于公共事业服务的实施例中,通过具有无线通信能力的公用事业计量系统来测量一组客户的电力消耗。 计量系统包括远程计量单元,其使用现有的通信标准,通过现有的无线通信系统(例如蜂窝基站)与中央控制器进行通信。 远程计量单元通过共享随机接入信道向中央控制器发送各种消息。 中央控制器通过寻呼信道向远程计量单元发送消息。 远程计量单元只能以半双工模式运行。 此外,远程计量单元可以向远程位置处的高级消费者服务提供网关。
    • 6. 发明授权
    • Method and apparatus for supporting communication in pico networks
    • 支持微微网络通信的方法和装置
    • US08687608B2
    • 2014-04-01
    • US11620629
    • 2007-01-05
    • Samir S. Soliman
    • Samir S. Soliman
    • H04W4/00
    • H04W16/18H04W48/16H04W68/00H04W72/0453H04W84/105H04W84/18H04W88/06
    • Techniques for extending coverage of a wireless communication network (e.g., a cellular network) to indoor and other locations are described. A wireless device may communicate with a base station in a wireless network via downlink and uplink frequency channels in a licensed frequency band using frequency division duplexing (FDD). The wireless device may communicate with a piconet base station (PBS) in a pico network (piconet) via the uplink frequency channel using time division duplexing (TDD). The PBS may communicate with the wireless device on the uplink frequency channel and may exchange data with the wireless network via a wireline communication link. The PBS may forward data received from the wireless device to the wireless network and may also forward data received from the wireless network for the wireless device to the wireless device. The PBS may receive paging messages from the wireless network for the wireless device and may forward the paging messages to the wireless device.
    • 描述了将无线通信网络(例如,蜂窝网络)的覆盖扩展到室内和其他位置的技术。 无线设备可以使用频分双工(FDD)通过许可频带中的下行链路和上行链路频道与无线网络中的基站进行通信。 无线设备可以使用时分双工(TDD)通过上行链路频率信道与微微网络(微微网)中的微微网基站(PBS)进行通信。 PBS可以在上行链路频率信道上与无线设备通信,并且可以经由有线通信链路与无线网络交换数据。 PBS可以将从无线设备接收的数据转发到无线网络,并且还可以将从无线设备的无线网络接收的数据转发到无线设备。 PBS可以从用于无线设备的无线网络接收寻呼消息,并且可以将寻呼消息转发到无线设备。
    • 9. 发明授权
    • Methods and apparatuses for transmitting and receiving position reference signals
    • 发送和接收位置参考信号的方法和装置
    • US08606220B2
    • 2013-12-10
    • US13431788
    • 2012-03-27
    • Samir S. SolimanPeter Gaal
    • Samir S. SolimanPeter Gaal
    • H04M11/04
    • H04B7/2687G01S1/042G01S5/0226G01S19/12G01S19/46H04W64/00
    • A method and apparatus for generating and use of a position location reference signal that allows a receiver to receive position location signals from relatively weak signal generators when in the presence of a strong signal source. The position location reference signals from multiple sources can be synchronized to occur within a scheduled time slot of a time division multiplexed communication system. During the scheduled time slot, each signal source can configure a transmission that includes a media access control address that corresponds to a value reserved for position location signals. Each signal source also configures the transmission to include a position location reference signal that corresponds to the signal source. The position location signals from each of the signal sources is positioned to occur at a time within the data portion of the scheduled time slot that no neighboring signal source transmits its corresponding position location signal.
    • 一种用于产生和使用位置定位参考信号的方法和装置,其允许接收机在存在强信号源时从相对较弱的信号发生器接收位置信号。 来自多个源的位置定位参考信号可以被同步在时分复用通信系统的调度时隙内。 在调度时隙期间,每个信号源可以配置包括对应于为位置定位信号保留的值的媒体访问控制地址的传输。 每个信号源还将传输配置为包括对应于信号源的位置定位参考信号。 来自每个信号源的位置信号定位成在调度时隙的数据部分内的某个时刻发生,没有相邻信号源发送其对应的位置信号。
    • 10. 发明申请
    • METHODS AND DEVICES FOR SERVING AS A PROXY BEACON FOR A TRACKING DEVICE
    • 用于作为跟踪装置的代用信标服务的方法和装置
    • US20130099920A1
    • 2013-04-25
    • US13279575
    • 2011-10-24
    • Bongyong SongSoumya DasKaushik ChakrabortySamir S. Soliman
    • Bongyong SongSoumya DasKaushik ChakrabortySamir S. Soliman
    • G08B1/08
    • G08B21/0277G01S1/68G01S5/0009G08B21/023G08B21/0261G08B25/004
    • One feature includes a mobile device being used as a mobile beacon and proxy for a tracking device that may track an object, such as a pet. The mobile device may act as a beacon that transmits messages over a short range communications link to the tracking device. If the tracking device fails to receive the messages transmitted by the mobile device, it may be assumed that the pet has gone missing, and in response the tracking device may contact a tracking server with its location information via a wireless wide area network (WWAN). Additionally, the mobile device may act as a proxy of the tracking device by transmitting and receiving data to/from the tracking server using its own communication interface on behalf of the tracking device. This helps conserve the battery power of the tracking device because the tracking device does not use its own WWAN interface.
    • 一个特征包括用作移动信标的移动设备和用于跟踪诸如宠物的对象的跟踪设备的代理。 移动设备可以充当通过短距离通信链路向跟踪设备发送消息的信标。 如果跟踪装置不能接收到移动装置发送的消息,则可以假设宠物已经丢失,并且作为响应,跟踪装置可以经由无线广域网(WWAN)与跟踪服务器及其位置信息联系, 。 此外,移动设备可以通过使用其自己的代表跟踪设备的通信接口向/从跟踪服务器发送和接收数据来充当跟踪设备的代理。 这有助于节省跟踪设备的电池电量,因为跟踪设备不使用自己的WWAN接口。