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    • 2. 发明申请
    • BROADCAST TRANSMISSION OF INFORMATION INDICATIVE OF A PSEUDORANGE CORRECTION
    • 广播传播信号指示伪劣矫正
    • WO2016177854A1
    • 2016-11-10
    • PCT/EP2016/060132
    • 2016-05-05
    • HERE GLOBAL B.V.
    • BARNES, Craig
    • G01S19/07G01S19/48G01S19/49
    • G01S19/07G01S19/11G01S19/25G01S19/45G01S19/48G01S19/49H04B7/18523H04H20/02
    • A method comprising receiving, by an apparatus, global-positioning-system data from a plurality of global-positioning-system satellites, determining a measured satellite pseudorange for each global-positioning-system satellite of the plurality of global-positioning-system satellites based, at least in part, on the global-positioning-system data, receiving, by the apparatus, of non-global- positioning-system data from at least one sensor, determining an apparatus position of the apparatus based, at least in part, on the non-global-positioning-system data, the determination of the apparatus position being absent consideration of any global-positioning-system data, determining at least one pseudorange correction associated with at least one global-positioning- system satellite of the plurality of global-positioning-system satellites based, at least in part, on the measured satellite pseudorange and the apparatus position, and causing broadcast transmission of information indicative of the pseudorange correction is disclosed.
    • 一种方法,包括通过设备从多个全球定位系统卫星接收全球定位系统数据,为所述多个全球定位系统卫星中的每个全球定位系统卫星确定测量的卫星伪距, 至少部分地基于所述全球定位系统数据,从所述装置接收来自至少一个传感器的非全球定位系统数据,至少部分地基于所述至少一个传感器来确定所述设备的设备位置, 在所述非全局定位系统数据上,所述设备位置的确定不考虑任何全球定位系统数据,确定与所述多个系统数据中的至少一个全球定位系统卫星相关联的至少一个伪距校正 至少部分地基于所测量的卫星伪距和装置位置的全球定位系统卫星,并且导致广播传输指示 公开了伪距校正。
    • 5. 发明申请
    • A TERMINAL FOR COMMUNICATING WITH A COMMUNICATION SATELLITE
    • 用于与通信卫星通信的终端
    • WO2011045251A2
    • 2011-04-21
    • PCT/EP2010/065141
    • 2010-10-08
    • ASTRIUM LIMITEDLESTER, DonaldMACMANUS, Niall, Andrew
    • LESTER, DonaldMACMANUS, Niall, Andrew
    • H04B7/185
    • H04B7/18523H04H60/90H04H2201/70H04N7/17318H04N21/2543H04N21/44222H04N21/6143H04N21/6193H04N21/6582
    • A terminal for communicating with a communication satellite A terminal comprising: a first transceiver for communicating with at least one device in a short range network; a second transceiver for communicating with a geostationary communication satellite in a network deploying a plurality of forward channels for the communication satellite to transmit data to said terminal and a plurality of return channels for the terminal to transmit data to said communication satellite, the second transceiver being configured to transmit data from said at least one device in one of said plurality of return channels. The at least one device may comprise a plurality of utility meters and other sensors. A large system comprising a plurality of the terminals, a communication satellite and a data authority may provide a system for collecting utility meter readings across a geographical region.
    • 一种用于与通信卫星通信的终端一种终端,包括:用于与短距离网络中的至少一个设备进行通信的第一收发器; 第二收发器,用于在部署用于通信卫星的多个前向信道的网络中与对地静止通信卫星进行通信,以向所述终端发送数据;以及多个返回信道,用于终端向所述通信卫星发送数据,第二收发信机 被配置为从所述多个返回信道之一中的所述至少一个设备发送数据。 所述至少一个装置可以包括多个公用事业计量表和其它传感器。 包括多个终端的大型系统,通信卫星和数据机构可以提供用于在地理区域上收集公用事业仪表读数的系统。
    • 8. 发明申请
    • POWER BALANCING SIGNAL COMBINER
    • 动力平衡信号组合
    • WO2006107868B1
    • 2008-02-14
    • PCT/US2006012303
    • 2006-04-03
    • DIRECTV GROUP INC
    • JAMES THOMAS HSHAH DIPAK M
    • H04N7/20
    • H04N21/6143H01Q1/125H01Q1/247H01Q5/45H01Q19/17H04B7/18523H04H20/63H04H40/90H04N7/20
    • Multiple systems for delivering satellite signals are described. An embodiment in accordance with the present invention comprises a receive antenna, including at least one low noise block amplifier (LNB), and a module, coupled to and proximate the receive antenna, the module comprising a multiswitch, coupled to the LNB, for directing the satellite signals received by the LNB to a plurality of outputs of the multiswitch, a plurality of tuners, respectively coupled to the outputs of the multiswitch, for tuning to a plurality of specific portions of the satellite signals in a respective fashion, the specific portions of the satellite signals selected based on commands received from a plurality of receivers, and an interface for delivering the specific portions of the satellite signals to the plurality of receivers, wherein the specific portions of the satellite signals are combined into a single combined signal and delivered to the plurality of receivers on a single output of the interface.
    • 描述了用于传送卫星信号的多个系统。 根据本发明的实施例包括一个包括至少一个低噪声块放大器(LNB)的接收天线和耦合到接收天线的模块,该模块包括耦合到LNB的多开关,用于引导 由LNB接收的卫星信号分别耦合到多开关的输出的多路开关的多个输出端,多个调谐器,用于以各自的方式调谐到卫星信号的多个特定部分,具体部分 基于从多个接收机接收的命令选择的卫星信号,以及用于将卫星信号的特定部分传送到多个接收机的接口,其中将卫星信号的特定部分组合成单个组合信号并传送 到接口的单个​​输出端上的多个接收器。
    • 9. 发明申请
    • METHOD FOR SYNCHRONIZING TRANSMISSIONS OF USER SIGNALS IN A HYBRID COMMUNICATION NETWORK
    • 用于在混合通信网络中同步用户信号传输的方法
    • WO2007090968A3
    • 2007-10-11
    • PCT/FR2007050675
    • 2007-01-23
    • ALCATEL LUCENTBLINEAU JOSEPHCHUBERRE NICOLASCOHEN MICHELCOURSEILLE OLIVIER
    • BLINEAU JOSEPHCHUBERRE NICOLASCOHEN MICHELCOURSEILLE OLIVIER
    • H04B7/185
    • H04H20/67H04B7/18523H04H20/18H04W56/0045
    • The invention concerns a device dedicated to the synchronization of the transmission of user signals in a single-frequency hybrid network comprising a transmission satellite (SAT) and regenerative transmitters (E1-E6) for retransmitting received user signals, according to a common frequency and a common waveform, to user terminals (T1, T2). Said method consists in temporally offsetting relative to a temporal marker (MT), which corresponds to the time of arrival of a selected element of user signals derived from the satellite (SAT) at a reference terrestrial arc (AR), the time of retransmission of the received user signals by each transmitter (E1-E6) by a local duration based on the respective positions of the transmitter and of the satellite (SAT) relative to a reference position (PR) selected on said arc (AR), so that common user signals retransmitted by the satellite (SAT) and the transmitter reach a user terminal (T1, T2) at substantially the same time.
    • 本发明涉及一种专用于在包括传输卫星(SAT)和用于重发接收的用户信号的再生发射机(E1-E6))的单频混合网络中的用户信号传输同步的装置,根据共同频率和 公共波形,到用户终端(T1,T2)。 所述方法包括相对于时间标记(MT)的时间偏移,其对应于在参考地面弧(AR)处从卫星(SAT)导出的用户信号的选定元素的到达时间,重传的时间 基于发射机和卫星(SAT)相对于在所述电弧(AR)上选择的参考位置(PR)的相应位置,每个发射机(E1-E6)接收到的用户信号的本地持续时间,使得共同 卫星(SAT)和发射机重发的用户信号基本上同时到达用户终端(T1,T2)。
    • 10. 发明申请
    • PROCEDE DE SYNCHRONISATION DES TRANSMISSIONS DE SIGNAUX D'UTILISATEURS DANS UN RESEAU DE COMMUNICATION HYBRIDE
    • 在混合通信网络中同步用户信号传输的方法
    • WO2007090968A2
    • 2007-08-16
    • PCT/FR2007/050675
    • 2007-01-23
    • ALCATEL LUCENTBLINEAU, JosephCHUBERRE, NicolasCOHEN, MichelCOURSEILLE, Olivier
    • BLINEAU, JosephCHUBERRE, NicolasCOHEN, MichelCOURSEILLE, Olivier
    • H04B7/185
    • H04H20/67H04B7/18523H04H20/18H04W56/0045
    • Un procédé est dédié à la synchronisation de la transmission de signaux d'utilisateurs dans un réseau hybride mono-fréquence comprenant un satellite de transmission (SAT) et des émetteurs régénératifs (E1-E6) chargés de retransmettre des signaux d'utilisateurs reçus, selon une même fréquence et une même forme d'onde, vers des terminaux d'utilisateurs (T1, T2). Ce procédé consiste à décaler temporellement par rapport à un marqueur temporel (MT), qui correspond à l'instant d'arrivée d'un élément choisi de signaux d'utilisateurs issus du satellite (SAT) au niveau d'un arc terrestre de référence (AR), l'instant de retransmission des signaux d'utilisateurs reçus par chaque émetteur (E1-E6) d'une durée locale fonction des positions respectives de l'émetteur et du satellite (SAT) par rapport à une position de référence (PR) choisie sur cet arc (AR), afin que des mêmes signaux d'utilisateurs retransmis par le satellite (SAT) et l'émetteur parviennent sensiblement en même temps au niveau d'un terminal d'utilisateur (T1, T2).
    • 程序dó 是d&eac​​; À 在包括传输卫星(SAT)和再生发射机(E1-E6)的单频混合网络中同步用户信号的传输 以相同的频率和相同的波形向用户终端(T1,T2)重发所接收的用户信号。 这个过程是 由...组成 相对于时间减速 一个时间标记(MT),对应于 所选卫星用户信号(SAT)到达参考地面弧(AR)的时刻,即重发时刻 根据发射机和卫星(SAT)相对于彼此的相应位置从当地时间由每个发射机(E1-E6)接收的用户信号; 在该弧(AR)上的选定参考位置(PR),使得相同的卫星重发用户信号(SAT)和发射机同时基本上同时到达。 用户终端的级别(T1,T2)。