Technologies for beam failure recovery
The present application relates to devices and components including apparatus, systems, and methods for beam failure recovery operations in wireless communication systems.
1. One or more non-transitory computer-readable media having instructions that, when executed by one or more processors, cause a user equipment (UE) to:
declare a beam failure with respect to a first beam in a first bandwidth part of a cell;
switch to a second bandwidth part of the cell based on the beam failure;
determine that a candidate beam detection (CBD) reference signal (RS) of a second beam in the second bandwidth part is not detected within a time window that is predefined or configured by radio resource control signaling; and
trigger, based on determination that the CBD RS is not detected within the time window, a contention-based random access (CBRA) procedure corresponding to a synchronization signal block within an initial bandwidth part of the cell.
2. The one or more non-transitory computer-readable media of claim 1 , wherein the second bandwidth part is the initial bandwidth part of the cell.
3. The one or more non-transitory computer-readable media of claim 1 , wherein the instructions, when executed, further cause the UE to:
receive beam failure recovery configuration information to exclusively configure the second bandwidth part for transmission of reference signals for candidate beam detection.
4. The one or more non-transitory computer-readable media of claim 3 , wherein to receive the beam failure recovery configuration information the UE is to process:
a beam failure recovery (BFR) configuration information element to detect a BFR-dedicated physical random access channel (PRACH) resource parameter having one or more bandwidth part identifiers; or
a BFR secondary cell configuration information element to detect a candidate beam reference signal parameter having one or more bandwidth part identifiers.
5. The one or more non-transitory computer-readable media of claim 1 , wherein the instructions, when executed, further cause the UE to:
receive beam failure recovery configuration information to configure a plurality of CBD RSs in a corresponding plurality of bandwidth parts in the cell, wherein the CBD RS is one of the plurality of CBD RSs.
6. The one or more non-transitory computer-readable media of claim 5 , wherein to receive the beam failure recovery configuration information the UE is to process:
a beam failure recovery (BFR) configuration information element to detect a BFR-dedicated physical random access channel (PRACH) resource parameter having one or more bandwidth part identifiers; or
a BFR secondary cell configuration information element to detect a candidate beam reference signal parameter having one or more bandwidth part identifiers.
7. The one or more non-transitory computer-readable media of claim 1 , wherein the instructions, when executed, further cause the UE to:
initiate communication with a transmit-receive point in the initial bandwidth part based on a beam associated with the synchronization signal block.
8. A user equipment (UE) comprising:
radio-frequency (RF) interface circuitry to receive and transmit signals in a plurality of bandwidth parts of a cell; and
processing circuitry coupled with the RF interface circuitry, the processing circuitry to:
declare a beam failure with respect to a first beam in a first bandwidth part of the plurality of bandwidth parts;
switch to a second bandwidth part of the plurality of bandwidth parts based on the beam failure;
determine a candidate beam detection (CBD) reference signal (RS) of a second beam in the second bandwidth part is not detected within a time window that is predefined or configured by radio resource control signaling; and
trigger, based on determination that the CBD RS is not detected within the time window, a contention-based random access (CBRA) procedure corresponding to a synchronization signal block within an initial bandwidth part of the cell.
9. The UE of claim 8 , wherein the second bandwidth part is the initial bandwidth part of the cell.
10. The UE of claim 8 , wherein the processing circuitry is further to:
receive beam failure recovery configuration information to exclusively configure the second bandwidth part for transmission of reference signals for candidate beam detection.
11. The UE of claim 10 , wherein to receive the beam failure recovery configuration information the processing circuitry is to process:
a beam failure recovery (BFR) configuration information element to detect a BFR-dedicated physical random access channel (PRACH) resource parameter having one or more bandwidth part identifiers; or
a BFR secondary cell configuration information element to detect a candidate beam reference signal parameter having one or more bandwidth part identifiers.
12. The UE of claim 8 , wherein the processing circuitry is further to:
receive beam failure recovery configuration information to configure a plurality of CBD RSs in a corresponding plurality of bandwidth parts in the cell, wherein the CBD RS is one of the plurality of CBD RSs.
13. The UE of claim 12 , wherein to receive the beam failure recovery configuration information the processing circuitry is to process:
a beam failure recovery (BFR) configuration information element to detect a BFR-dedicated physical random access channel (PRACH) resource parameter having one or more bandwidth part identifiers; or
a BFR secondary cell configuration information element to detect a candidate beam reference signal parameter having one or more bandwidth part identifiers.
14. The UE of claim 8 , wherein the processing circuitry is further to:
initiate communication with a transmit-receive point in the initial bandwidth part based on a beam associated with the synchronization signal block.
15. A method comprising:
identifying a beam failure with respect to a first beam in a first bandwidth part of a cell;
switching to a second bandwidth part of the cell based on the beam failure;
determining a candidate beam detection (CBD) reference signal (RS) of a second beam in the second bandwidth part is not detected within a time window that is predefined or configured by radio resource control signaling; and
triggering, based on said determining that the CBD RS is not detected within the time window, a contention-based random access (CBRA) procedure corresponding to a synchronization signal block within an initial bandwidth part of the cell.
16. The method of claim 15 , wherein the second bandwidth part is the initial bandwidth part of the cell.
17. The method of claim 15 , further comprising:
receiving beam failure recovery configuration information to exclusively configure the second bandwidth part for transmission of reference signals for candidate beam detection.
18. The method of claim 17 , wherein receiving the beam failure recovery configuration information comprises processing:
a beam failure recovery (BFR) configuration information element to detect a BFR-dedicated physical random access channel (PRACH) resource parameter having one or more bandwidth part identifiers; or
a BFR secondary cell configuration information element to detect a candidate beam reference signal parameter having one or more bandwidth part identifiers.
19. The method of claim 15 , further comprising:
receiving beam failure recovery configuration information to configure a plurality of CBD RSs in a corresponding plurality of bandwidth parts in the cell, wherein the CBD RS is one of the plurality of CBD RSs.
20. The method of claim 15 , further comprising:
initiating communication with a transmit-receive point in the initial bandwidth part based on a beam associated with the synchronization signal block.