Beam reporting triggered by data transmission
Embodiments of the present disclosure relate to beam reporting triggered by data transmission. A first device receives from a second device configuration information concerning at least one candidate beam for serving the first device. The first device determines whether data is available for transmission from the first device to the second device. If the data is available for transmission, the first device selects at least one first reference signal identifying the at least one candidate beam based on the configuration information. The first device transmits information concerning the selected at least one first reference signal to the second device.
1. A first device comprising:
at least one processor; and
at least one memory comprising instructions stored thereon that, when executed by the at least one processor, cause the first device to perform at least:
receiving, from a second device, configuration information concerning at least one candidate beam associated with a pre-configured uplink resource configured by the second device for the first device;
determining, while the first device is in an inactive state, that data is available for transmission;
selecting, by the first device while in the inactive state, a beam from the at least one candidate beam based on the configuration information, wherein the selected beam is identified by a first reference signal to the first device; and
transmitting, by the first device while the first device is in the inactive state, to the second device, the data on the pre-configured uplink resource using the selected beam.
2. The first device of claim 1 , wherein the first reference signal is disassociated with at least one of the following:
resources for transmission of the data, or
resources for transmission of a random access request from the first device to the second device.
3. The first device of claim 2 , wherein the selected beam is identified based on a comparison of the following with at least one threshold:
a first received power of the first reference signal, and
a second received power of at least one second reference signal associated with the resources.
4. The first device of claim 3 , wherein the selecting the beam from the at least one candidate beam based on the configuration information comprises:
in accordance with a determination that the first received power is above a first threshold power, determining whether the second received power is below a second threshold power, the first threshold power being above the second threshold power; and
in accordance with a determination that the second received power is below the second threshold power, selecting the beam.
5. The first device of claim 3 , wherein the selecting the beam from the at least one candidate beam based on the configuration information comprises:
determining a difference between the first received power and the second received power; and
in accordance with a determination that the difference is above a third threshold power, selecting the beam.
6. The first device of claim 1 , wherein the receiving the configuration information comprises receiving the configuration information via at least one of the following:
a dedicated signalling, or
a broadcast signalling.
7. The first device of claim 3 , wherein the configuration information comprises information concerning at least one of the following:
the at least one threshold, or
a number of the at least one candidate beam.
8. The first device of claim 1 , wherein the first device comprises a terminal device, and the second device comprises a network device.
9. A second device comprising:
at least one processor; and
at least one memory comprising instructions stored thereon that, when executed by the at least one processor, cause the second device to perform at least:
transmitting, to a first device, configuration information concerning at least one candidate beam associated with a pre-configured uplink resource for the first device;
receiving, from the first device, while the first device is in an inactive state, data on the pre-configured uplink resource using a beam selected by the first device and identified by a first reference signal; and
serving the first device by using the selected beam.
10. The second device of claim 9 , wherein the first reference signal is disassociated with at least one of the following:
resources for transmission of data from the first device to the second device, or
resources for transmission of a random access request from the first device to the second device.
11. The second device of claim 9 , wherein the transmitting the configuration information comprises transmitting the configuration information via at least one of the following:
a dedicated signalling, or
a broadcast signalling.
12. The second device of claim 9 , wherein the configuration information comprises information concerning a number of the at least one candidate beam.
13. The second device of claim 9 , wherein the first device comprises a terminal device, and the second device comprises a network device.
14. A method comprising:
receiving, at a first device, from a second device, configuration information concerning at least one candidate beam associated with a pre-configured uplink resource for the first device;
determining, by the first device, while the first device is in an inactive state, that data is available for transmission over the pre-configured uplink resource to the second device:
selecting, by the first device in the inactive state, a beam from the at least one candidate beam based on the configuration information, wherein the selected beam is identified by a first reference signal to the first device; and
transmitting, by the first device while the first device is in the inactive state, to the second device, the data on the pre-configured uplink resource using the selected beam.
15. The method of claim 14 , wherein the first reference signal is disassociated with at least one of the following:
resources for transmission of the data, or
resources for transmission of a random access request from the first device to the second device.
16. The method of claim 15 , wherein the selected beam is identified based on a comparison of the following with at least one threshold:
a first received power of the first reference signal, and
a second received power of at least one second reference signal associated with the resources.
17. The method of claim 16 , wherein the selecting the beam from the at least one candidate beam based on the configuration information comprises:
in accordance with a determination that the first received power is above a first threshold power, determining whether the second received power is below a second threshold power, the first threshold power being above the second threshold power; and
in accordance with a determination that the second received power is below the second threshold power, selecting the beam.
18. The method of claim 16 , wherein the selecting the beam from the at least one candidate beam based on the configuration information comprises:
determining a difference between the first received power and the second received power; and
in accordance with a determination that the difference is above a third threshold power, selecting the beam.
19. The method of claim 16 , wherein the configuration information comprises information concerning at least one of the following:
the at least one threshold, or
a number of the at least one candidate beam.
20. The method of claim 14 , wherein the first device comprises a terminal device, and the second device comprises a network device.