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    • 35. 发明授权
    • Time synchronization in a satellite network
    • 卫星网络中的时间同步
    • US09544079B2
    • 2017-01-10
    • US14569339
    • 2014-12-12
    • VT IDIRECT, INC.
    • Aneesh Vasudev DalviMohsen Amiri Farahani
    • H04W56/00H04J3/06G01S19/23H04B7/185
    • H04J3/0697H04B7/18517H04B7/18578H04W56/001H04W56/0015
    • A remote device comprising a remote clock oscillator with relatively low precision, a receiver that receives time packets transmitted periodically from the hub device via the satellite, each time packet including a hub real time clock (RTC) value and a hub network clock reference (NCR) value, a remote RTC counter that represents a remote RTC value at the remote, a remote NCR counter that represents a remote NCR value at the remote, and processing circuitry that extracts the hub RTC value and the hub NCR value from a current time packet, compares contents of the current time packet with contents of a previously received time packet, and adjusts the remote RTC counter based on the result of the comparison to synchronize the remote RTC value at the remote with the hub RTC value.
    • 一种远程设备,包括具有相对较低精度的远程时钟振荡器,接收器,其接收经由卫星从集线器设备周期性地发送的时间分组,每个时间包包括集线器实时时钟(RTC)值和集线器网络时钟参考(NCR )值,表示遥控器上的远程RTC值的远程RTC计数器,表示远程处的远程NCR值的远程NCR计数器以及从当前时间分组中提取集线器RTC值和集线器NCR值的处理电路 将当前时间分组的内容与先前接收的时间分组的内容进行比较,并根据比较结果调整远程RTC计数器,以使远程的远程RTC值与集线器RTC值同步。
    • 37. 发明申请
    • TIME SYNCHRONIZATION IN A SATELLITE NETWORK
    • 卫星网络中的时间同步
    • US20150215031A1
    • 2015-07-30
    • US14569339
    • 2014-12-12
    • VT IDIRECT, INC.
    • Aneesh Vasudev DALVIMohsen Amiri Farahani
    • H04B7/185H04J3/06H04W56/00
    • H04J3/0697H04B7/18517H04B7/18578H04W56/001H04W56/0015
    • A remote device comprising a remote clock oscillator with relatively low precision, a receiver that receives time packets transmitted periodically from the hub device via the satellite, each time packet including a hub real time clock (RTC) value and a hub network clock reference (NCR) value, a remote RTC counter that represents a remote RTC value at the remote, a remote NCR counter that represents a remote NCR value at the remote, and processing circuitry that extracts the hub RTC value and the hub NCR value from a current time packet, compares contents of the current time packet with contents of a previously received time packet, and adjusts the remote RTC counter based on the result of the comparison to synchronize the remote RTC value at the remote with the hub RTC value.
    • 一种远程设备,包括具有相对较低精度的远程时钟振荡器,接收器,其接收经由卫星从集线器设备周期性地发送的时间分组,每个时间包包括集线器实时时钟(RTC)值和集线器网络时钟参考(NCR )值,表示遥控器上的远程RTC值的远程RTC计数器,表示远程处的远程NCR值的远程NCR计数器以及从当前时间分组中提取集线器RTC值和集线器NCR值的处理电路 将当前时间分组的内容与先前接收的时间分组的内容进行比较,并根据比较结果调整远程RTC计数器,以使远程的远程RTC值与集线器RTC值同步。
    • 38. 发明授权
    • Method and apparatus for global bandwidth management
    • 用于全局带宽管理的方法和装置
    • US08909220B1
    • 2014-12-09
    • US13618965
    • 2012-09-14
    • Sima AftahiAntoine Raymond NaamanJoseph Jude BoonePeng Zhao
    • Sima AftahiAntoine Raymond NaamanJoseph Jude BoonePeng Zhao
    • H04W4/00H04W40/00H04B3/08H04W28/20H04W84/06H04B7/02
    • H04W84/06H04B7/02H04B7/2041
    • A satellite communication system includes a global bandwidth enforcer that allocates bandwidth from the global bandwidth pool in accordance with a group service plan having a predetermined geographic scope. The system further includes an allocation of bandwidth from the one or more channels of the one or more beams of a first satellite in accordance with the group service plan. The system further includes a second satellite access station that receives an allocation of bandwidth from the one or more channels of the one or more beams of the second satellite in accordance with the group service plan. The system further includes a first sub-network associated with the first satellite access having a coverage area in the predetermined geographic scope of the group service plan, where the first sub-network receives an allocation of bandwidth from the first satellite access station in accordance with the group service plan.
    • 卫星通信系统包括全局带宽执行器,其根据具有预定地理范围的组服务计划从全局带宽池分配带宽。 该系统还包括根据组服务计划从第一卫星的一个或多个波束的一个或多个信道分配带宽。 该系统还包括第二卫星接入站,其根据组服务计划从第二卫星的一个或多个波束的一个或多个信道接收带宽分配。 该系统还包括与第一卫星接入相关联的第一子网,其具有在群服务计划的预定地理范围内的覆盖区域,其中第一子网从第一卫星接入站接收根据 集团服务计划。
    • 39. 发明授权
    • Method and apparatus for satellite communication
    • 卫星通信方法和装置
    • US08831598B1
    • 2014-09-09
    • US13492730
    • 2012-06-08
    • Daniel G. ClemmensenSadaf Fardeen
    • Daniel G. ClemmensenSadaf Fardeen
    • H04W88/02
    • H04W8/20H04B7/18543H04B7/2041H04W84/06
    • A method of communicating via a satellite using a remote apparatus includes determining a geographical location of the remote apparatus, and determining a local data set corresponding to the geographical location. The data set includes communication parameters for a communication conducted by the remote apparatus from the geographical location. The method also includes retrieving the local data set from a global data set stored entirely in a memory of the remote apparatus, and conducting the communication via the satellite by the remote apparatus according to the communication parameters. The global data set includes local data sets corresponding to every geographical location in the world. A corresponding apparatus, a method and apparatus for generating a global data set, and a satellite communication system are also disclosed.
    • 使用远程设备经由卫星进行通信的方法包括确定远程设备的地理位置,以及确定对应于地理位置的本地数据集。 该数据组包括远程装置从地理位置进行的通信的通信参数。 该方法还包括从完全存储在远程装置的存储器中的全局数据集检索本地数据集,并且根据通信参数通过远程装置经由卫星进行通信。 全局数据集包括对应于世界上每个地理位置的本地数据集。 还公开了用于生成全局数据集的相应装置,方法和装置以及卫星通信系统。