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    • 1. 发明申请
    • NEIGHBOR CELL LIST IN A SATELLITE COMMUNICATION SYSTEM
    • 在卫星通信系统中的邻居单元列表
    • WO2018052744A3
    • 2018-03-22
    • PCT/US2017/049928
    • 2017-09-01
    • QUALCOMM INCORPORATED
    • LUCKY, Kundan KumarMARSH, GeneULUPINAR, FatihVASSILOVSKI, DanKAPOOR, RohitKUMAR, RajeevRASSAM, Faris
    • H04B7/185H04B7/204
    • The disclosure relates in some aspects to enabling a user terminal (UT) to obtain information about nearby cells and any beams generated by nearby cells. For example, a network can send a neighbor cell list to UTs, where the list identifies the cells in that neighborhood and provides information about any beams generated by those cells. Thus, a UT can learn the neighboring beams/cells that the UT can reselect to if the current beam/cell becomes weak. In some aspects, the UE can learn the attitude (e.g., pitch, roll, yaw, or any combination thereof) profile of neighboring satellites as well as the pointing angles and the ON-OFF schedules of their beams. In some aspects, the UT can learn a start angle and a span for a satellite and use this information to identify a satellite the UT can reselect to if the current beam/cell becomes weak.
    • 本公开在一些方面涉及使得用户终端(UT)能够获得关于附近小区和由附近小区生成的任何波束的信息。 例如,网络可以向UT发送邻居小区列表,其中该列表标识该邻居中的小区并提供关于由这些小区生成的任何波束的信息。 因此,如果当前波束/小区变弱,UT可以学习UT可以重新选择的相邻波束/小区。 在一些方面,UE可以学习相邻卫星的姿态(例如,俯仰,滚转,偏航或其任何组合)轮廓以及它们的波束的指向角和ON-OFF时间表。 在某些方面,UT可以学习卫星的起始角度和跨度,并且如果当前波束/小区变弱,则使用该信息来识别UT可以重新选择的卫星。
    • 5. 发明申请
    • NEIGHBOR CELL LIST
    • WO2018052744A2
    • 2018-03-22
    • PCT/US2017/049928
    • 2017-09-01
    • QUALCOMM INCORPORATED
    • LUCKY, Kundan KumarMARSH, GeneULUPINAR, FatihVASSILOVSKI, DanKAPOOR, RohitKUMAR, RajeevRASSAM, Faris
    • H04B7/185H04B7/204
    • The disclosure relates in some aspects to enabling a user terminal (UT) to obtain information about nearby cells and any beams generated by nearby cells. For example, a network can send a neighbor cell list to UTs, where the list identifies the cells in that neighborhood and provides information about any beams generated by those cells. Thus, a UT can learn the neighboring beams/cells that the UT can reselect to if the current beam/cell becomes weak. In some aspects, the UE can learn the attitude (e.g., pitch, roll, yaw, or any combination thereof) profile of neighboring satellites as well as the pointing angles and the ON-OFF schedules of their beams. In some aspects, the UT can learn a start angle and a span for a satellite and use this information to identify a satellite the UT can reselect to if the current beam/cell becomes weak.
    • 本公开在一些方面涉及使得用户终端(UT)能够获得关于附近小区和由附近小区生成的任何波束的信息。 例如,网络可以向UT发送邻居小区列表,其中该列表标识该邻居中的小区并提供关于由这些小区生成的任何波束的信息。 因此,如果当前波束/小区变弱,UT可以学习UT可以重新选择的相邻波束/小区。 在一些方面,UE可以学习相邻卫星的姿态(例如,俯仰,滚转,偏航或其任何组合)轮廓以及它们的波束的指向角和ON-OFF时间表。 在某些方面,UT可以学习卫星的起始角度和跨度,并且如果当前波束/小区变弱,则使用该信息来识别UT可以重新选择的卫星。