IP Library › Granted Patent US 11,864,128
Granted Patent B2
US 11,864,128 · App. 17/053,507 · Granted Jan 2, 2024

Default PUCCH and SRS beam determination

Inventors: Yushu Zhang (Beijing, CN); Chunhai Yao (Beijing, CN); Chunxuan Ye (San Diego, CA); Dawei Zhang (Saratoga, CA); Fangli Xu (Beijing, CN); Haijing Hu (Beijing, CN); Haitong Sun (Irvine, CA); Hong He (Cupertino, CA); Jie Cui (San Jose, CA); Oghenekome Oteri (San Diego, CA); Wei Zeng (San Diego, CA); Weidong Yang (San Diego, CA); Yang Tang (Cupertino, CA); Yuchul Kim (Santa Clara, CA); Yuqin Chen (Shenzhen, CN)
Assignee: Apple Inc.
H04W52/242H04W16/28H04W52/146H04W72/02H04W74/0841H04W74/0866
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Quick Facts
Patent No.
US 11,864,128
App. No.
17/053,507
Granted
Jan 2, 2024
Kind
B2
Abstract

Apparatuses, systems, and methods for a user equipment device (UE) to determine a default beam for a dedicated PUCCH/SRS in a CC. The UE may determine a pathloss RS has been configured in the CC, e.g., responsive to the UE determining that spatial relationship information for a default transmission beam has not been configured and determine the default beam for transmissions based, at least in part, on the (configured) pathloss RS. Additionally, responsive to determining that the pathloss RS has not been configured in the CC, the UE may determine that no CORESETs/TCI states for a PDSCH in the CC have been configured and determine the default beam for transmissions based, at least in part, on a default transmission beam in another CC, a CC index, a PRACH procedure; a PUSCH transmission; an SRS transmission, and/or a PUCCH transmission.

Claims (85)

1. A user equipment device (UE), comprising:

at least one antenna;

at least one radio, wherein the at least one radio is configured to perform cellular communication using at least one radio access technology (RAT);

one or more processors coupled to the at least one radio, wherein the one or more processors and the at least one radio are configured to perform voice and/or data communications;

wherein the one or more processors are configured to cause the UE to:

in response to determining that a base station serving the UE has not configured spatial relationship information for a default beam for transmissions in a component carrier (CC), determine whether a pathloss reference signal (RS) has been configured in the CC;

in response to determining that the pathloss RS has been configured in the CC, determine the default beam for transmissions based, at least in part, on the pathloss RS;

in response to determining that the pathloss RS has not been configured in the CC, determine whether any control resource sets (CORESETs) and/or transmission configuration indication (TCI) states for a physical downlink shared channel (PDSCH) in the CC have been configured; and

in response to determining that no CORESESTs and/or TCI states have been configured in the CC, determine the default beam for transmissions based, at least in part, on a physical random-access channel (PRACH) procedure.

2. The UE of claim 1 ,

wherein, when no CORESESTs and/or TCI states have been configured in the CC, the default beam for transmissions is further based, at least in part, on at least one of:

a default transmission beam in another CC;

a CC index;

a physical uplink shared channel (PUSCH) transmission;

a sounding reference signal (SRS) transmission; or

a physical uplink control channel (PUCCH) transmission.

3. The UE of claim 2 ,

wherein, to determine the default beam for transmissions based, at least in part, on the default transmission beam in another CC, the one or more processors are further configured to cause the UE to determine the default beam for transmissions based, at least in part, on a default physical downlink shared channel (PDSCH) beam or a CORESET beam configured in another CC.

4. The UE of claim 2 ,

wherein, to determine the default beam for transmissions based, at least in part, on a PRACH procedure, the one or more processors are further configured to cause the UE to determine the default beam for transmissions based, at least in part, on a beam used for a most recent PRACH procedure in the CC, in a CC in a same band as the CC, in a same band group as the CC, in a same cell group as the CC, or in a same CC list group as the CC;

wherein, to determine the default beam for transmissions based, at least in part, on a PUSCH transmission, the one or more processors are further configured to cause the UE to determine the default beam for transmissions based, at least in part, on a beam used for a most recent PUSCH transmission in the CC, in a CC in a same band as the CC, in a same band group as the CC, in a same cell group as the CC, or in a same CC list group as the CC;

wherein, to determine the default beam for transmissions based, at least in part, on an SRS transmission, the one or more processors are further configured to cause the UE to determine the default beam for transmissions based, at least in part, on a beam used for a most recent SRS transmission in the CC, in a CC in a same band as the CC, in a same band group as the CC, in a same cell group as the CC, or in a same CC list group as the CC; and

wherein, to determine the default beam for transmissions based, at least in part, on a PUCCH transmission, the one or more processors are further configured to cause the UE to determine the default beam for transmissions based, at least in part, on a beam used for a most recent PUCCH transmission in the CC, in a CC in a same band as the CC, in a same band group as the CC, in a same cell group as the CC, or in a same CC list group as the CC.

5. The UE of claim 4 ,

wherein the one or more processors are further configured to cause the UE to:

report, to the base station, band group via a UE capability message.

6. The UE of claim 2 ,

wherein, to determine the default beam for transmissions based, at least in part, on a CC index, the one or more processors are further configured to cause the UE to determine the default beam for transmissions based, at least in part, on selection of a CC index from CCs within a same band as the CC, within a same band group as the CC, or within a same cell group as the CC.

7. The UE of claim 6 ,

wherein selection of a CC index includes selection of a monitored CORESET and/or active TCI state configured with a lowest or highest identifier.

8. The UE of claim 6 ,

wherein selection of a CC index includes selection of a CC index from CCs in a CC group configured by radio resource control (RRC) signaling with the base station.

9. The UE of claim 1 ,

wherein, to determine the default beam for transmissions based, at least in part, on the pathloss RS, the one or more processors are further configured to cause the UE to determine the default beam for transmissions based, at least in part, on a beam used for a first, last, or indicated pathloss RS in a pathloss RS list configured via radio resource control (RRC) signaling with the base station.

10. An apparatus, comprising:

a memory; and

a processing element in communication with the memory, wherein the processing element is configured to:

in response to determining that a base station has not configured spatial relationship information for a default beam for transmissions in a component carrier (CC), determine whether a pathloss reference signal (RS) has been configured in the CC;

in response to determining that the pathloss RS has been configured in the CC, determine the default beam for transmissions based, at least in part, on the pathloss RS;

in response to determining that the pathloss RS has not been configured in the CC, determine whether any control resource sets (CORESETs) and/or transmission configuration indication (TCI) states for a physical downlink shared channel (PDSCH) in the CC have been configured; and

in response to determining that no CORESESTs and/or TCI states have been configured in the CC, determine the default beam for transmissions based, at least in part, on a physical random-access channel (PRACH) procedure.

11. The apparatus of claim 10 ,

wherein the processing element is further configured to:

determine a pathloss RS for power control for a dedicated physical uplink control channel (PUCCH) or a sounding reference signal (SRS) based, at least in part, on at least one of:

a downlink RS used to determine a default spatial relationship;

a synchronization signal block (SSB) associated with a most recent random-access channel (RACH) procedure in the CC, in a CC in a same band as the CC, in a CC in a same band group as the CC, or in a CC in a same cell group as the CC;

a pathloss RS used for a most recent transmission on a physical uplink shared channel (PUSCH) in the CC, in a CC in a same band as the CC, in a CC in a same band group as the CC, or in a CC in a same cell group as the CC;

a pathloss RS used for a most recent transmission of a physical uplink control channel (PUCCH) in the CC, in a CC in a same band as the CC, in a CC in a same band group as the CC, or in a CC in a same cell group as the CC; or

a pathloss RS used for a most recent transmission of an SRS in the CC, in a CC in a same band as the CC, in a CC in a same band group as the CC, or in a CC in a same cell group as the CC.

12. The apparatus of claim 11 ,

wherein the processing element is further configured to:

determine a change in a default spatial relationship; and

switch to a new pathloss RS one time slot after measuring a specified number of samples of the new pathloss RS after corresponding control signaling for a spatial relationship update takes effect.

13. The apparatus of claim 12 ,

wherein the specified number of samples is predefined via a standard, configured via higher layer signaling with the base station, or based on capabilities of the apparatus.

14. The apparatus of claim 12 ,

wherein, after determining the change in the default spatial relationship and prior to an effective time of the new pathloss RS, the processing element is further configured to use a higher layer filtered reference signal received power (RSRP) based on a prior pathloss RS or a layer 1 (L1) RSRP based on the new pathloss RS for pathloss measurement.

15. The apparatus of claim 11 ,

wherein, when no CORESESTs and/or TCI states have been configured in the CC, the default beam for transmissions is further based, at least in part, on at least one of:

a default transmission beam in another CC;

a CC index;

a physical uplink shared channel (PUSCH) transmission;

a sounding reference signal (SRS) transmission; or

a physical uplink control channel (PUCCH) transmission.

16. A non-transitory computer readable memory medium storing program instructions executable by processing circuitry to cause a user equipment device (UE) to:

in response to determining that a base station serving the UE has not configured spatial relationship information for a default beam for transmissions in a component carrier (CC), determine whether a pathloss reference signal (RS) has been configured in the CC; and

in response to determining that the pathloss RS has been configured in the CC, determine the default beam for transmissions based, at least in part, on the pathloss RS;

in response to determining that the pathloss RS has not been configured in the CC, determine whether any control resource sets (CORESETs) and/or transmission configuration indication (TCI) states for a physical downlink shared channel (PDSCH) in the CC have been configured; and

in response to determining that no CORESESTs and/or TCI states have been configured in the CC, determine the default beam for transmissions based, at least in part, on a physical random-access channel (PRACH) procedure.

17. The non-transitory computer readable memory medium of claim 16 ,

wherein, when no CORESESTs and/or TCI states have been configured in the CC, the default beam for transmissions is further based, at least in part, on at least one of:

a default transmission beam in another CC;

a CC index;

a physical uplink shared channel (PUSCH) transmission;

a sounding reference signal (SRS) transmission; or

a physical uplink control channel (PUCCH) transmission.

18. The non- transitory computer readable memory medium of claim 17 ,

wherein, to determine the default beam for transmissions based, at least in part, on a default transmission beam in another CC, the program instructions are further executable to cause the UE to determine the default beam for transmissions based, at least in part, on a default physical downlink shared channel (PDSCH) beam or a CORESET beam configured in another CC.

19. The non-transitory computer readable memory medium of claim 17 ,

wherein, to determine the default beam for transmissions based, at least in part, on a PRACH procedure, the program instructions are further executable to cause the UE to determine the default beam for transmissions based, at least in part, on a beam used for a most recent PRACH procedure in the CC, in a CC in a same band as the CC, in a same band group as the CC, in a same cell group as the CC, or in a same CC list group as the CC;

wherein, to determine the default beam for transmissions based, at least in part, on a PUSCH transmission, the program instructions are further executable to cause the UE to determine the default beam for transmissions based, at least in part, on a beam used for a most recent PUSCH transmission in the CC, in a CC in a same band as the CC, in a same band group as the CC, in a same cell group as the CC, or in a same CC list group as the CC;

wherein, to determine the default beam for transmissions based, at least in part, on an SRS transmission, the program instructions are further executable to cause the UE to determine the default beam for transmissions based, at least in part, on a beam used for a most recent SRS transmission in the CC, in a CC in a same band as the CC, in a same band group as the CC, in a same cell group as the CC, or in a same CC list group as the CC; and

wherein, to determine the default beam for transmissions based, at least in part, on a PUCCH transmission, the program instructions are further executable to cause the UE to determine the default beam for transmissions based, at least in part, on a beam used for a most recent PUCCH transmission in the CC, in a CC in a same band as the CC, in a same band group as the CC, in a same cell group as the CC, or in a same CC list group as the CC.

20. The non-transitory computer readable memory medium of claim 17 ,

wherein, to determine the default beam for transmissions based, at least in part, on a CC index, the program instructions are further executable to cause the UE to determine the default beam for transmissions based, at least in part, on selection of a CC index from CCs within a same band as the CC, within a same band group as the CC, or within a same cell group as the CC.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 28, 2021
From: ZHANG, YUSHU; YAO, CHUNHAI; YE, CHUNXUAN; ZHANG, DAWEI; XU, FANGLI; HU, HAIJING; SUN, HAITONG; HE, HONG; CUI, JIE; OTERI, OGHENEKOME; ZENG, WEI; YANG, WEIDONG; TANG, YANG; KIM, YUCHUL; CHEN, YUQIN
To: APPLE INC.
Reel/Frame 056072/0412 →
Continuity (1)
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