Abstract
Embodiments of the present disclosure provide a method for transmitting and receiving a service between a terminal device and a base station. The terminal device receives radio resource configuration information and indication information from the base station. The radio resource configuration information includes frequency band information of N (N≥2) frequency ranges and characteristic information of radio interface technologies corresponding to each of the N frequency ranges. The indication information indicates a frequency range in which a physical layer resource is to be used by the terminal device to transmit and receive the service. Characteristics of the radio interface technologies include at least one of: a cyclic prefix (CP) length, a duration of an orthogonal frequency division multiplexing (OFDM) symbol, or a subcarrier spacing.
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Technologies
Product
Use Cases
Services
Claim
1. A method for transmitting and receiving a service, comprising:
receiving, by a terminal device from a base station, radio resource configuration information, wherein the radio resource configuration information comprises frequency band information of N frequency ranges and characteristic information of radio interface technologies corresponding to each of the N frequency ranges, wherein N?2; receiving, by the terminal device from the base station, indication information indicating a frequency range in which a physical layer resource is to be used by the terminal device to transmit and receive the service; and transceiving, between the terminal device and the base station, the service using a radio interface technology corresponding to the frequency range; wherein characteristics of the radio interface technologies comprise at least one of: a cyclic prefix (CP) length, a duration of an orthogonal frequency division multiplexing (OFDM) symbol, or a subcarrier spacing.
2. The method according to claim 1, further comprising:
receiving, by the terminal device from the base station, a correspondence between a data radio bearer (DRB) and the radio interface technology corresponding to the frequency range;
wherein transceiving the service using the radio interface technology corresponding to the frequency range comprises:
transceiving the service on the DRB using the radio interface technology corresponding to the frequency range.
3. The method according to claim 1, further comprising:
receiving, by the terminal device from the base station, a correspondence between a signaling radio bear (SRB) and the radio interface technology corresponding to the frequency range; and receiving, by the terminal device from the base station, a radio resource control (RRC) signaling on the SRB.
4. The method according to claim 1, wherein the N frequency ranges include a dedicated frequency range, and wherein the dedicated frequency range carries a random access channel, a paging channel or a broadcast channel.
5. The method according to claim 1, further comprising:
receiving, by the terminal device from the base station, information of random access resource of a cell; and accessing, by the terminal device, a wireless network, or performing, by the terminal device, an uplink synchronization through the random access resource of the cell.
6. A method for transmitting and receiving a service, comprising:
sending, by a base station to a terminal device, radio resource configuration information, wherein the radio resource configuration information comprises frequency band information of N frequency ranges and characteristic information of radio interface technologies corresponding to each of the N frequency ranges, wherein N?2; sending, by the base station to the terminal device, indication information indicating a frequency range in which a physical layer resource is to be used by the terminal device to transmit and receive the service; and transceiving, between the base station and the terminal device, the service using a radio interface technology corresponding to the frequency range; wherein characteristics of the radio interface technologies comprise at least one of: a cyclic prefix (CP) length, a duration of an orthogonal frequency division multiplexing (OFDM) symbol, or a subcarrier spacing.
7. The method according to claim 6, further comprising:
sending, by the base station to the terminal device, a correspondence between a data radio bearer (DRB) and the radio interface technology corresponding to the frequency range; wherein transceiving the service using the radio interface technology corresponding to the frequency range comprises: transceiving the service on the DRB using the radio interface technology corresponding to the frequency range.
8. The method according claim 6, further comprising:
sending, by the base station to the terminal device, a correspondence between a signaling radio bear (SRB) and the radio interface technology corresponding to the frequency range; and sending, by the base station to the terminal device, a radio resource control (RRC) signaling on the SRB.
9. The method according to claim 6, wherein the N frequency ranges include a dedicated frequency range, wherein the dedicated frequency range carries a random access channel, a paging channel or a broadcast channel.
10. The method according to claim 6, further comprising:
sending, by the base station to the terminal device, information of random access resource of a cell.
11. A terminal device, comprising:
a transceiver, a processor, and a non-transitory computer-readable storage medium storing programming instructions for execution by the processor;
wherein the programming instructions, when executed, cause the terminal device to:
receive radio resource configuration information from a base station, wherein the radio resource configuration information comprises frequency band information of N frequency ranges and characteristic information of radio interface technologies corresponding to each of the N frequency ranges, wherein N?2;
receive indication information from the base station, wherein the indication information indicates a frequency range in which a physical layer resource is to be used by the terminal device to transmit and receive a service; and
transceiving, between the terminal device and the base station, the service using a radio interface technology corresponding to the frequency range;
wherein the characteristics of the radio interface technologies comprise at least one of: a cyclic prefix (CP) length, a duration of an orthogonal frequency division multiplexing (OFDM) symbol, or a subcarrier spacing.
12. The terminal device according to claim 11, wherein the programming instructions further cause the terminal device to receive a correspondence between a data radio bearer (DRB) and the radio interface technology, and wherein transceiving the service using the radio interface technology corresponding to the frequency range comprises transceiving the service on the DRB using the radio interface technology corresponding to the frequency range.
13. The terminal device according to claim 11, wherein the programming instructions further cause the terminal device to:
receive, from the base station, a correspondence between a signaling radio bear (SRB) and the radio interface technology corresponding to the frequency range; and receive, from the base station, a radio resource control (RRC) signaling on the SRB.
14. The terminal device according to claim 11, wherein the N frequency ranges include a dedicated frequency range, and wherein the dedicated frequency range carries a random access channel, a paging channel or a broadcast channel.
15. The terminal device according to claim 11, wherein the programming instructions further cause the terminal device to:
receive, from the base station, information of random access resource of a cell; and access a wireless network, or perform an uplink synchronization through the random access resource of the cell.
16. A base station, comprising:
a transceiver, a processor, and a non-transitory computer-readable storage medium storing programming instructions for execution by the processor;
wherein the programming instructions, when executed, cause the base station to:
send radio resource configuration information to a terminal device, wherein the radio resource configuration information comprises frequency band information of N frequency ranges and characteristic information of radio interface technologies corresponding to each of the N frequency ranges, wherein N?2;
send indication information to the terminal device, wherein the indication information indicates a frequency range in which a physical layer resource is to be used by the terminal device to transmit and receive a service; and
transceive, between the base station and the terminal device the service using a radio interface technology corresponding to the frequency range;
wherein characteristics of the radio interface technologies comprise at least one of: a cyclic prefix (CP) length, duration of an orthogonal frequency division multiplexing (OFDM) symbol, or a subcarrier spacing.
17. The base station according to claim 16, wherein the programming instructions further cause the base station to:
send, to the terminal device, a correspondence between a data radio bearer (DRB) and the radio interface technology corresponding to the frequency range;
wherein transceiving the service using a radio interface technology corresponding to the frequency range comprises:
transceiving the service on the DRB using the radio interface technology corresponding to the frequency range.
18. The base station according to claim 16, wherein the programming instructions further cause the base station to:
send, to the terminal device, a correspondence between a signaling radio bear (SRB) and the radio interface technology corresponding to the frequency range; and send, to the terminal device, a radio resource control (RRC) signaling on the SRB.
19. The base station according to claim 16, wherein the N frequency ranges include a dedicated frequency range, and wherein the dedicated frequency range carries a random access channel, a paging channel or a broadcast channel.
20. The base station according to claim 16, wherein the programming instructions further cause the base station to:
send information of random access resource of a cell to the terminal device.
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The information in blue was extracted from the third parties (Standard Setting Organisation, Espacenet)
The information in grey was provided by the patent holder
The information in purple was extracted from the FrandAvenue
Explicitly disclosed patent:openly and comprehensibly describes all details of the invention in the patent document.
Implicitly disclosed patent:does not explicitly state certain aspects of the invention, but still allows for these to be inferred from the information provided.
Basis patent:The core patent in a family, outlining the fundamental invention from which related patents or applications originate.
Family member:related patents or applications that share a common priority or original filing.