CA2987805C

Communication method, base station, and user equipment

Abstract

Disclosed is a communication method. The method comprises: a base station and a first user equipment perform beam scanning alignment on a first sub-frame, so as to determine a beam in the first sub-frame for sending data, wherein the number of beams for sending data is greater than or equal to one; and when using the beam to send data to the first user equipment, the base station sends beam information about the beam for sending the data, wherein the beam information at least contains identification information about the beam and a synchronization signal, the synchronization signal is used for synchronizing a second user equipment and the base station, and the identification information about the beam is used by the first user equipment and the second user equipment to identify the beam sent by the base station. Also disclosed is a base station and a user equipment. By means of the present invention, the time of scanning alignment can be reduced, thereby facilitating quick access of a user that has not accessed previously.

CA2987805C, drawing sheet 1
Sheet 1 of 17

Term

8.7 yearsleft in the term

Expires 30 May 2035.

  1. Priority and filed
  2. Granted
  3. Today
  4. Expires

43 claims: 8 independent, 35 dependent

  1. 1
    A communication method, comprising:performing, by a base station, beam scanning and alignment together with first user equipment in a first subframe, to determine a beam that is used for sending data in the first subframe, wherein a quantity of beams used for sending data is greater than or equal to 1;when sending data to the first user equipment by using the beam, sending, by the base station, beam information of the beam to a second user equipment, wherein the first user equipment is a user equipment that already has an access to the base station, and the second user equipment is a user equipment that is yet to access the base station, the beam information comprising at least identification information of the beam and a synchronization signal, and wherein the synchronization signal is used by second user equipment to synchronize with the base station;and the identification information of the beam is used by the first user equipment and the second user equipment to identify the beam sent by the base station, and die base station performs beam scanning and alignment together with the first user equipment and the second user equipment in a second subframe, wherein a scanned beam does not comprise at least a beam that is scheduled for sending data in the first subframe, and the second subframe is a next subframe to the first subframe.
  2. 4
    The method according to any one of claims 1 to 3, wherein if the quantity of beams that are used for sending data in the first subframe is greater than 1, and the beam used for sending data is switched from a first beam to a second beam, when the beam information is being sent, the beam information carried in a time-frequency resource is switched to beam information of the second beam.
  3. 5
    The method according to any one of claims 1 to 4, wherein the synchronization signal and the identification information in the beam information are located in different fields in a same subframe or located in a same field in a same subframe.
  4. 6
    The method according to any one of claims 1 to 5, wherein the beam information is stored in a preset fixed resource block;or a storage location of the beam information is indicated by the base station.
  5. 8
    A communication method, comprising:when a base station performs beam scanning and alignment together with a first user equipment in a first subframe, determining, by the base station, a beam that is used for sending data in the first subframe;when sending data to the first user equipment by using the beam, sending, by the base station, beam information of the beam to the first user equipment and a second user equipment, wherein the first user equipment is a user equipment that already has an access to the base station, and the second user equipment is a user equipment that is yet to access the base station, wherein the beam information comprises at least identification information of the beam and a synchronization signal;receiving, by the second user equipment, the beam information sent by the base station;Date Reçue/Date Received 2022-10-24 synchronizing, by the second user equipment, with the base station according to the synchronization signal;identifying, by the second user equipment, according to the identification information of the beam, the beam sent by the base station;and the method further comprises: performing, by the first user equipment, beam scanning and alignment together with the base station in a second subframe, wherein a scanned beam does not comprise at least a beam that is scheduled for sending data in the first subframe, and the second subframe is a next subframe to the first subframe.
  6. 10
    The method according to any one of claims 8 to 9, wherein the synchronization signal and the identification information in the beam information are located in different fields in a same subframe or located in a same field in a same subframe.
  7. 11
    Abase station, comprising:a beam scanning unit, configured to perform beam scanning and alignment together with first user equipment in a first subframe, to determine a beam that is used for sending data in the first subframe, wherein a quantity of beams used for sending data is greater than or equal to 1;and a sending unit, configured to send data to the first user equipment by using the beam, and send beam information of the beam to a second user equipment, wherein the first user equipment is a user equipment that already has an access to the base station, and the second user equipment is a user equipment that is yet to access die base station, the beam information comprising at least identification information of Date Reçue/Date Received 2022-10-24 the beam and a synchronization signal;wherein the synchronization signal is used by second user equipment to synchronize with the base station;the identification information of the beam is used by the first and the second user equipment to identify the beam sent by the base station, and the beam scanning unit is further configured to perform beam scanning and alignment together with the first user equipment and the second user equipment in a second subframe, wherein a scanned beam does not comprise at least a beam that is scheduled for sending data in the first subframe, and the second subframe is a next subframe to the first subframe.
  8. 14
    The base station according to any one of claims 11 to 13, wherein if tiie quantity of beams that are used for sending data in the first subframe is greater than 1, and the beam used for sending data is switched from a first beam to a second beam, when the beam information is being sent, the beam information carried in a time-frequency resource is switched to beam information of the second beam.
  9. 15
    The base station according to any one of claims 11 to 14, wherein the synchronization signal and the identification information in the beam information are located in different fields in a same subframe or located in a same field in a same Date Reçue/Date Received 2022-10-24 subframe.
  10. 16
    The base station according to any one of claims 11 to 15, wherein the beam information is stored in a preset fixed resource block;or the beam information is stored at a storage location specified by the base station.
  11. 18
    A base station, comprising:a receiver, a transmitter, a memory, and a processor, wherein the receiver, the transmitter, the memory, and the processor are connected to a bus, the memory recorded thereon computer-readable instructions, and the processor is configured to invoke the computer-readable instructions recorded in die memory to perform die following operations: performing beam scanning and alignment together with first user equipment in a first subframe, to determine a beam that is used for sending data in the first subframe, wherein a quantity of beams used for sending data is greater than or equal to 1;and instructing the transmitter to send, when the transmitter sends data to the first user equipment, beam information of the beam used to a second user equipment, wherein the first user equipment is a user equipment that already has an access to the base station, and the second user equipment is a user equipment that is yet to access the base station, the beam information comprising at least identification information of the beam and a synchronization signal, wherein the synchronization signal is used by second user equipment to synchronize with the base station;and the identification information of the beam is used by the first user equipment and the second user equipment to identify the beam sent by the base station, and wherein the processor is further configured to: perform beam scanning and alignment together with the first user equipment and the second user equipment in a second subframe, wherein a scanned beam does not comprise at least a beam that is scheduled for sending data in die first subframe, and Date Reçue/Date Received 2022-10-24 the second subframe is a next subframe to the first subframe.
  12. 20
    The base station according to any one of claims 18 to 19, wherein the receiver is configured to receive beam selection information reported by the second user equipment, wherein the beam selection information is generated by the second user equipment according to the beam information sent by the base station and the demodulated beam quality information, and comprises beam identification infoimation of an optimal beam and beam quality information of the optimal beam, wherein the optimal beam is obtained after the second user equipment performs comparison according to the beam quality information;and the processor is further configured to allocate a beam to the second user equipment according to the beam selection information, and instruct the receiver and the transmitter to perform data transmission with the second user equipment.
  13. 21
    The base station according to any one of claims 18 to 20, wherein if the quantity of beams that are used for sending data in the first subframe is greater than 1, and the beam used for sending data is switched from a first beam to a second beam, when the beam information is being sent, the beam information carried in a time-frequency resource is switched to beam information of the second beam.
  14. 22
    The base station according to any one of claims 18 to 21, wherein the synchronization signal and the identification information in the beam information are located in different fields in a same subframe or located in a same field in a same subframe.
  15. 23
    The base station according to any one of claims 18 to 22, wherein the beam information is stored in a preset fixed resource block;or the processor is further configured to indicate a storage location of the beam information.
  16. 25
    A computer readable memory storing computer executable instructions thereon that when executed by a computer perform the method according to any one of claims 1 to 7.
  17. 26
    A computer readable memory storing computer executable instructions thereon that when executed by a computer perform the method according to any one of claims 8 to 10.
  18. 27
    A communication method, comprising:sending, by a base station, data to a first user equipment using a beam;sending beam information of the beam to a second user equipment simultaneously or substantially simultaneously when sending the data to the first user equipment using the beam, wherein the beam information comprises identification information of the beam and a synchronization signal, the synchronization signal facilitating the second user equipment to synchronize with the base station;and receiving, by the base station, demodulated beam quality information obtained by the second user equipment through demodulation according to the beam information sent by the base station, wherein the first user equipment is user equipment that has accessed the base station, and the second user equipment is user equipment that is to access the base station, and wherein the beam information is stored in a preset fixed resource block;or the beam information is stored in a storage location indicated by the base station.
  19. 30
    The method according to any one of claims 27 to 29, wherein the synchronization signal and the identification information in the beam information are located in a same field of a same subframe.
  20. 31
    A communication method, comprising:receiving, by a first user equipment, first beam information from a base station;and receiving, by the first user equipment, data sent by the base station according to the first beam information, wherein the data is sent by the base station simultaneously or substantially simultaneously with second beam information of a beam on which the base station sends the data, wherein the second beam information comprises identification information of the beam and a synchronization signal, the synchronization signal facilitating a second user equipment to synchronize with the base station, and wherein: a beam identifier indicated by the first beam information is the same as a beam identifier indicated by the second beam information;and wherein: the second beam information is stored in a preset fixed resource block, or is stored in a storage location indicated by the base station.
  21. 34
    The method according to any one of claims 31 to 33, wherein the synchronization signal and the identification information in the beam information are located in a same field of a same subframe.
  22. 35
    A communication device, comprising:a transmitter, configured to: send data to a first user equipment using a beam;send beam information of the beam to a second user equipment simultaneously or substantially simultaneously when sending the data to the first user equipment using the beam, wherein the beam information comprises identification information of the beam and a synchronization signal, wherein the synchronization signal facilitates the second user equipment to synchronize with the communication device;and a receiver, configured to: receive demodulated beam quality information obtained by the second user equipment through demodulation according to die beam information sent by die communication device, wherein the first user equipment is user equipment that has accessed the communication device, and the second user equipment is user equipment that is to access the communication device ;and, wherein: the beam information is stored in a preset fixed resource block;or the beam information is stored in a storage location indicated by the communication device.
  23. 38
    The communication device according to any one of claims 35 to 37, wherein the synchronization signal and the identification information in the beam information are located in a same field of a same subframe.
  24. 39
    A communication device, comprising:a receiver, configured to: receive first beam information from a base station;and receive data from the base station according to the first beam information, wherein the data is sent by the base station simultaneously or substantially simultaneously with second beam infonnation of a beam on which the base station sends the data, wherein the second beam infonnation comprises identification information of the beam and a synchronization signal, the synchronization signal facilitates another communication device to synchronize with the base station;wherein: a beam identifier indicated by the first beam infonnation is the same as a beam identifier indicated by the second beam information;and the second beam information is stored in a preset fixed resource block, or is stored in a storage location indicated by the base station.
  25. 40
    A base station, configured to perform the method according to any one of claims 27 to 30.
  26. 41
    A device, configured to perform the method according to any one of claims 31 to 34, wherein the device is the first user equipment.
  27. 42
    A computer readable storage medium storing computer executable instructions, which when executed by a computer cause the computer to perform the method according to any one of claims 27 to 30.
  28. 43
    A computer readable storage medium storing computer executable instructions, which when executed by a computer cause the computer to perform the method according to any one of claims 31 to 34.
Independent claims28