IP Library › Granted Patent US 11,638,290
Granted Patent B2
US 11,638,290 · App. 17/024,215 · Granted Apr 25, 2023

Downlink control for multi-TRP transmissions

Inventors: Yushu Zhang (Beijing, CN); Haitong Sun (Irvine, CA); Wei Zeng (San Diego, CA); Hong He (Cupertino, CA); Yuchul Kim (Santa Clara, CA); Dawei Zhang (Saratoga, CA); Haijing Hu (Beijing, CN); Yakun Sun (San Jose, CA)
Assignee: Apple Inc.
H04W72/23H04L1/0003H04W72/0453
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Quick Facts
Patent No.
US 11,638,290
App. No.
17/024,215
Granted
Apr 25, 2023
Kind
B2
Abstract

Apparatuses, systems, and methods for providing downlink control for multi-TRP transmission. A cellular base station may provide a downlink control information transmission to a wireless device scheduling downlink transmissions to the wireless device from multiple transmission reception points. The downlink control information may include information that can be used by the wireless device to determine any or all of physical resource block bundling sizes, frequency domain resource allocations, modulation and coding schemes, redundancy versions, phase tracking reference signal configurations, and any of various other possible types of configuration information for the downlink transmissions. The wireless device may receive the downlink transmissions from the plurality of transmission reception points in accordance with the downlink control information.

Claims (66)

1. A wireless device, comprising:

at least one antenna;

at least one radio coupled to the at least one antenna; and

a processor coupled to the at least one radio;

wherein the antenna, the radio, and the processor are configured to cause the wireless device to:

receive, from a first transmission reception point (TRP) of a plurality of TRPs, a downlink control information transmission scheduling a plurality of frequency division multiplexed (FDM) downlink transmissions from the plurality of TRPs;

determine physical resource block bundling sizes separately for the plurality of FDM downlink transmissions from the plurality of TRPs, wherein the determination is based on parameters comprising at least one of:

whether the plurality of FDM downlink transmissions from the plurality of TRPs are contiguous; or

whether a number of the plurality of FDM downlink transmissions from the plurality of TRPs exceeds a threshold; and

receive the plurality of FDM downlink transmissions from the plurality of TRPs in accordance with the downlink control information transmission, wherein the downlink control information includes one indication of a common modulation and coding scheme (MCS) that is applied to the plurality of FDM downlink transmissions and an indication of a redundancy version (RV), wherein respective RVs for the respective FDM downlink transmissions of the plurality of FDM transmissions are determinable in a preconfigured manner from the indication of the RV, wherein a first RV for a first FDM downlink transmission of the plurality of FDM transmissions is different from a second RV for a second FDM downlink transmission of the plurality of FDM transmissions and the second FDM downlink transmission is different from the first FDM downlink transmission.

2. The wireless device of claim 1 ,

wherein the downlink control information transmission includes an indication of respective frequency domain resource allocations for the respective FDM downlink transmissions, wherein the antenna, the radio, and the processor are further configured to cause the wireless device to:

determine the respective frequency domain resource allocations for the respective FDM downlink transmissions based at least in part on the indication of the frequency domain resource allocation for the respective FDM downlink transmissions.

3. The wireless device of claim 1 ,

wherein the downlink control information transmission includes a frequency domain resource allocation indicator that configures frequency resources for the plurality of FDM downlink transmissions, wherein the antenna, the radio, and the processor are further configured to cause the wireless device to:

determine respective frequency domain resource allocation for the respective FDM downlink transmissions based at least in part on the frequency domain resource allocation indicator,

wherein the frequency domain resource allocation indicator comprises respective combinatorial indices calculated based on respective start resource block index values and respective end resource block index value for the respective FDM downlink transmissions.

4. The wireless device of claim 1 ,

wherein the antenna, the radio, and the processor are further configured to cause the wireless device to:

determine the MCS for respective FDM downlink transmissions based on the one indication of the common MCS.

5. The wireless device of claim 1 ,

wherein the antenna, the radio, and the processor are further configured to cause the wireless device to:

determine respective RVs for the respective FDM downlink transmissions based at least in part on the RV.

6. The wireless device of claim 5 ,

wherein the MCS and the RV for a third FDM downlink transmission of the plurality of FDM downlink transmissions is determined further based at least in part on a resource allocation for the third FDM downlink transmission.

7. The wireless device of claim 1 ,

wherein the antenna, the radio, and the processor are further configured to cause the wireless device to:

determine respective phase tracking reference signal (PT-RS) dynamic presences and frequency domain patterns for respective FDM downlink transmissions based at least in part on a number of resource blocks associated with the respective FDM downlink transmissions.

8. The wireless device of claim 1 ,

wherein the antenna, the radio, and the processor are further configured to cause the wireless device to:

determine respective phase tracking reference signal (PT-RS) dynamic presences and time domain patterns for respective FDM downlink transmissions based at least in part on the MCS.

9. The wireless device of claim 1 ,

wherein the antenna, the radio, and the processor are further configured to cause the wireless device to:

determine respective phase tracking reference signal (PT-RS) patterns for respective FDM downlink transmissions separately based at least in part on a number of resource blocks associated with the respective FDM downlink transmissions.

10. A cellular base station, comprising:

at least one antenna;

at least one radio coupled to the at least one antenna; and

a processor coupled to the at least one radio;

wherein the antenna, the radio, and the processor are configured to cause the cellular base station to:

provide, from a first transmission reception point (TRP) of a plurality of TRPs, downlink control information scheduling a plurality of frequency division multiplexed (FDM) downlink transmissions from the plurality of TRPs to a wireless device;

determine physical resource block bundling sizes separately for the plurality of FDM downlink transmissions from the plurality of TRPs, wherein the determination is based on parameters comprising at least one of:

whether the plurality of FDM downlink transmissions from the plurality of TRPs are contiguous; or

whether a number of the plurality of FDM downlink transmissions from the plurality of TRPs exceeds a threshold; and

provide, from the first TRP, at least one frequency division multiplexed (FDM) downlink transmission of the plurality of FDM downlink transmissions to the wireless device in accordance with the downlink control information, wherein the downlink control information includes one indication of a common modulation and coding scheme (MCS) that is applied to the plurality of FDM downlink transmissions and one indication of a redundancy version (RV), wherein respective RVs for the respective FDM downlink transmissions of the plurality of FDM transmissions are determinable in a preconfigured manner from the indication of the RV, wherein a first RV for a first FDM downlink transmission of the plurality of FDM transmissions is different from a second RV for a second FDM downlink transmission of the plurality of FDM transmissions and the second FDM downlink transmission is different from the first FDM downlink transmission.

11. The cellular base station of claim 10 , wherein the downlink control information scheduling the plurality of FDM downlink transmissions from the plurality of TRPs comprises information for the determining physical resource block bundling sizes for the plurality of FDM downlink transmissions.

12. The cellular base station of claim 10 , wherein the downlink control information scheduling the plurality of FDM downlink transmissions from the plurality of TRPs comprises information for determining a frequency domain resource allocation for the respective FDM downlink transmissions.

13. The cellular base station of claim 10 , wherein the downlink control information scheduling the plurality of FDM downlink transmissions from the plurality of TRPs comprises information for determining, for the respective FDM downlink transmissions, a phase tracking reference signal (PT-RS) configuration.

14. An apparatus, comprising:

a processor configured to cause a wireless device to:

receive, from a first transmission reception point (TRP) of a plurality of TRPs, a downlink control information transmission scheduling a plurality of frequency division multiplexed (FDM) downlink transmissions from the plurality of TRPs;

determine physical resource block bundling sizes separately for the plurality of FDM downlink transmissions from the plurality of TRPs, wherein the determination is based on parameters comprising at least one of:

whether the plurality of FDM downlink transmissions from the plurality of TRPs are contiguous; or

whether a number of the plurality of FDM downlink transmissions from the plurality of TRPs exceeds a threshold; and

receive the plurality of FDM downlink transmissions from the plurality of TRPs in accordance with the downlink control information transmission, wherein the downlink control information includes one indication of a common modulation and coding scheme (MCS) that is applied to the plurality of FDM downlink transmissions and one indication of a redundancy version (RV), wherein respective RVs for the respective FDM downlink transmissions of the plurality of FDM transmissions are determinable in a preconfigured manner from the indication of the RV, wherein a first RV for a first FDM downlink transmission of the plurality of FDM transmissions is different from a second RV for a second FDM downlink transmission of the plurality of FDM transmissions and the second FDM downlink transmission is different from the first FDM downlink transmission.

15. The apparatus of claim 14 , wherein the processor is further configured to cause the wireless device to:

determine respective frequency domain resource allocations for respective FDM downlink transmissions using the downlink control information.

16. The apparatus of claim 14 , wherein the processor is further configured to cause the wireless device to:

determine respective phase tracking reference signal (PT-RS) dynamic presences and frequency domain patterns for respective FDM downlink transmissions based at least in part on a number of resource blocks associated with the respective FDM downlink transmissions.

17. The apparatus of claim 14 , wherein the processor is further configured to cause the wireless device to:

determine respective phase tracking reference signal (PT-RS) dynamic presences and time domain patterns for respective FDM downlink transmissions based at least in part on the MCS.

18. The apparatus of claim 14 , wherein the processor is further configured to cause the wireless device to:

determine respective phase tracking reference signal (PT-RS) patterns for respective FDM downlink transmissions separately based at least in part on a number of resource blocks associated with the respective FDM downlink transmissions.

19. The apparatus of claim 14 , wherein the processor is further configured to cause the wireless device to:

determine respective phase tracking reference signal (PT-RS) ports associated with respective FDM downlink transmissions based at least in part on a demodulation reference signal (DMRS) port allocation for the respective FDM downlink transmissions.

20. The apparatus of claim 14 , wherein the processor is further configured to cause the wireless device to:

determine the MCS and the RV for a third FDM downlink transmission of the plurality of FDM downlink transmissions further based at least in part on a resource allocation for the third FDM downlink transmission.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 17, 2020
From: ZHANG, YUSHU; SUN, HAITONG; ZENG, WEI; HE, HONG; KIM, YUCHUL; ZHANG, DAWEI; HU, HAIJING; SUN, YAKUN
To: APPLE INC.
Reel/Frame 053806/0588 →
Priority Claims (1)
CN 201910917116.4 · Sep 26, 2019 · national
Continuity (1)
Related Publication 20210100022A1 · Apr 1, 2021