IP Library › Granted Patent US 11,910,416
Granted Patent B2
US 11,910,416 · App. 17/036,991 · Granted Feb 20, 2024

Default quasi-colocation for single downlink control information-based multiple transmission reception points

Inventors: Mostafa Khoshnevisan (San Diego, CA); Peter Gaal (San Diego, CA); Xiaoxia Zhang (San Diego, CA); Yan Zhou (San Diego, CA); Tao Luo (San Diego, CA); Jing Sun (San Diego, CA); Arumugam Chendamarai Kannan (San Diego, CA)
Assignee: QUALCOMM Incorporated
H04W72/53H04L5/0092H04L5/0094H04L5/0098H04W8/24H04W72/046H04W72/23
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Quick Facts
Patent No.
US 11,910,416
App. No.
17/036,991
Granted
Feb 20, 2024
Kind
B2
Abstract

Methods, systems, and devices for wireless communications are described. A communication device, which may be otherwise known as user equipment (UE) may receive a downlink control information (DCI) on a physical downlink control channel (PDCCH). The DCI may include one or more of an indication of a set of transmission configuration indicator (TCI) states related to a physical downlink shared channel (PDSCH), one or more receive beams associated with the set of TCI states, or a physical downlink shared channel (PDSCH) scheme. The UE may decode the DCI and may determine a temporal period associated with the indication of the set of TCI states. The UE may receive, based on the temporal period, the PDSCH according to one or more of the set of TCI states, the one or more receive beams associated with the set of TCI states, the PDSCH scheme, or one or more default receive beams.

Claims (103)

1. An apparatus for wireless communication, comprising:

one or more memories storing processor-executable code; and

one or more processors coupled with the one or more memories,

the one or more processors, individually or collectively, configured to execute the code to cause the apparatus to:

receive a downlink control information on a physical downlink control channel, the downlink control information indicating a physical downlink shared channel multiplexing scheme and comprising one or more of an indication of a plurality of transmission configuration indicator states related to a physical downlink shared channel from a plurality of transmission reception points or an indication of one or more receive beams associated with the plurality of transmission configuration indicator states, wherein each of the plurality of transmission configuration indicator states is associated with a different transmission reception point of a plurality of transmission reception points;

decode the downlink control information;

determine a temporal period associated with the indication of the plurality of transmission configuration indicator states and a temporal offset period associated with the physical downlink shared channel from the plurality of transmission reception points; and

receive, from the plurality of transmission reception points and based at least in part on a difference between respective durations of the temporal period and the temporal offset period, the physical downlink shared channel according to the physical downlink shared channel multiplexing scheme and one or more of the plurality of transmission configuration indicator states, the one or more receive beams associated with the plurality of transmission configuration indicator states, or one or more default receive beams.

2. The apparatus of claim 1 , wherein the one or more processors are individually or collectively further operable to execute the code to cause the apparatus to:

identify a capability relating to the one or more receive beams; and

select one or more of the plurality of transmission configuration indicator states, the one or more receive beams associated with the plurality of transmission configuration indicator states, or the one or more default receive beams, based at least in part on the capability,

wherein receiving the physical downlink shared channel is based at least in part on the selecting.

3. The apparatus of claim 2 , wherein the one or more processors are individually or collectively further operable to execute the code to cause the apparatus to:

include an indication of the temporal period in the capability; and

transmit the capability carrying the indication of the temporal period.

4. The apparatus of claim 3 , wherein the one or more processors are individually or collectively further operable to execute the code to cause the apparatus to:

identify a transmission configuration indicator field in the downlink control information,

wherein the transmission configuration indicator field indicates one or more transmission configuration indicator states of the plurality of transmission configuration indicator states.

5. The apparatus of claim 4 , wherein the one or more processors are individually or collectively further operable to execute the code:

determine that the temporal offset period is greater than or equal to the temporal period, wherein, to receive the physical downlink shared channel, the one or more processors are individually or collectively operable to execute the code to cause the apparatus to:

receive, based at least in part on the temporal offset period being greater than or equal to the temporal period, the physical downlink shared channel according to the one or more transmission configuration indicator states of the plurality of transmission configuration indicator states.

6. The apparatus of claim 3 , wherein the one or more processors are individually or collectively further operable to execute the code to cause the apparatus to:

determine a second temporal period to decode the downlink control information; and

transmit, with the capability, a second indication of the second temporal period to decode the downlink control information.

7. The apparatus of claim 6 , wherein the temporal period is different from the second temporal period.

8. The apparatus of claim 7 , wherein the second temporal period is smaller than the temporal period.

9. The apparatus of claim 6 , wherein the one or more processors are individually or collectively further operable to execute the code to cause the apparatus to:

determine that the temporal offset period is greater than or equal to the second temporal period; and

determine that the temporal offset period is lesser than or equal to the temporal period, wherein receiving the physical downlink shared channel comprises:

receive, based at least in part on one or more of the temporal offset period being greater than or equal to the second temporal period or the temporal offset period being lesser than or equal to the temporal period, the physical downlink shared channel according to one or more of the physical downlink shared channel multiplexing scheme or the one or more default receive beams for the physical downlink shared channel.

10. The apparatus of claim 6 , wherein the one or more processors are individually or collectively further operable to execute the code to cause the apparatus to:

determine that the temporal offset period is lesser than the second temporal period, wherein receiving the physical downlink shared channel comprises:

receive, based at least in part on the temporal offset period being lesser than the second temporal period, the physical downlink shared channel according to one or more of the one or more default receive beams or a default physical downlink shared channel scheme for the physical downlink shared channel.

11. The apparatus of claim 6 , wherein the one or more processors are individually or collectively further operable to execute the code to cause the apparatus to:

receive, based at least in part on the temporal period, the physical downlink shared channel according to a default physical downlink shared channel scheme, wherein the default physical downlink shared channel scheme is based at least in part on a set of preconfigured physical downlink shared channel schemes.

12. The apparatus of claim 6 , wherein the second temporal period comprises a quantity of symbols.

13. The apparatus of claim 6 , wherein the one or more processors are individually or collectively further operable to execute the code to cause the apparatus to:

determine a subcarrier spacing based at least in part on the capability, wherein determining the second temporal period is based at least in part on the subcarrier spacing.

14. The apparatus of claim 1 , wherein the temporal offset period comprises a duration from an ending symbol of the physical downlink control channel carrying the downlink control information to a beginning symbol of the physical downlink shared channel, wherein the physical downlink control channel schedules the physical downlink shared channel.

15. The apparatus of claim 1 , wherein one or more processors are individually or collectively further operable to execute the code to cause the apparatus to:

determine that the temporal offset period is lesser than the temporal period;

receive, based at least in part on that the temporal offset period being lesser than the temporal period, a first data sample set in accordance with the one or more default receive beams and the physical downlink shared channel multiplexing scheme; and

receive, based at least in part on that the temporal offset period being lesser than the temporal period, a second data sample set in accordance with the one or more default receive beams and the physical downlink shared channel multiplexing scheme.

16. The apparatus of claim 15 , wherein the one or more processors are individually or collectively further operable to execute the code to cause the apparatus to:

store one or more of the first data sample set or the second data sample set based at least in part on that the temporal offset period being lesser than the temporal period, wherein the stored first data sample set or the stored second data sample set correspond to a first antenna panel or a second antenna panel.

17. The apparatus of claim 15 , wherein the one or more processors are individually or collectively further operable to execute the code to cause the apparatus to:

process one or more of the first data sample set or the second data sample set based at least in part on the physical downlink shared channel multiplexing scheme, wherein the physical downlink shared channel multiplexing scheme comprises a space division multiplexing scheme.

18. The apparatus of claim 15 , wherein the one or more processors are individually or collectively further operable to execute the code to cause the apparatus to:

process one or more of the first data sample set or the second data sample set based at least in part on the plurality of transmission configuration indicator states.

19. The apparatus of claim 15 , wherein the one or more processors are individually or collectively further operable to execute the code to cause the apparatus to:

process one or more of the first data sample set or the second data sample set based at least in part on the physical downlink shared channel multiplexing scheme, wherein the physical downlink shared channel multiplexing scheme comprises a frequency division multiplexing scheme, wherein, to process one or more of the first data sample set or the second data sample set, the one or more processors are individually or collectively operable to execute the code to cause the apparatus to:

process the first data sample set in a first set of resource blocks corresponding to a first transmission configuration indicator state of the plurality of transmission configuration indicator states; and

process the second data sample set in a second set of resource blocks corresponding to a second transmission configuration indicator state of the plurality of transmission configuration indicator states.

20. The apparatus of claim 15 , wherein the one or more processors are individually or collectively further operable to execute the code to cause the apparatus to:

process one or more of the first data sample set or the second data sample set based at least in part on the physical downlink shared channel multiplexing scheme, wherein the physical downlink shared channel multiplexing scheme comprises a time division multiplexing scheme, wherein, to process one or more of the first data sample set or the second data sample set, the one or more processors are individually or collectively operable to execute the code to cause the apparatus to:

process the first data sample set in a first plurality of transmission time intervals corresponding to a first transmission configuration indicator state of the plurality of transmission configuration indicator states; and

process the second data sample set in a second set of set of transmission time intervals corresponding to a second transmission configuration indicator state of the plurality of transmission configuration indicator states.

21. The apparatus of claim 1 , wherein the temporal period relates to one or more of a quantity of symbols to receive the physical downlink control channel and apply spatial quasi-colocation information for the physical downlink shared channel.

22. The apparatus of claim 1 , wherein the one or more processors are individually or collectively further operable to execute the code to cause the apparatus to:

determine a quantity of symbols to receive the physical downlink control channel based at least in part on the temporal period;

apply spatial quasi-colocation information for the physical downlink shared channel; and

receive the physical downlink shared channel based at least in part on the spatial quasi-colocation information.

23. The apparatus of claim 1 , wherein the one or more default receive beams are based at least in part on a set of preconfigured receive beams.

24. The apparatus of claim 1 , wherein the physical downlink shared channel multiplexing scheme comprises a single transmission configuration indicator state scheme, a time division multiplexing scheme, a frequency division multiplexing scheme, a space division multiplexing scheme, or a code division multiplexing scheme.

25. The apparatus of claim 1 , wherein the one or more processors are individually or collectively further operable to execute the code to cause the apparatus to:

receive the physical downlink shared channel over a duration, wherein the duration comprises a transmission occasion, a transmission time interval, and the transmission time interval comprising one or more orthogonal frequency-division multiplexing symbols, one or more mini-slots, one or more slots, or a combination thereof.

26. A method for wireless communication, comprising:

receiving a downlink control information on a physical downlink control channel, the downlink control information indicating a physical downlink shared channel multiplexing scheme and comprising one or more of an indication of a plurality of transmission configuration indicator states related to a physical downlink shared channel from a plurality of transmission reception points or an indication of one or more receive beams associated with the plurality of transmission configuration indicator states, wherein each of the plurality of transmission configuration indicator states is associated with a different transmission reception point of a plurality of transmission reception points;

decoding the downlink control information;

determining a temporal period associated with the indication of the plurality of transmission configuration indicator states and a temporal offset period associated with the physical downlink shared channel from the plurality of transmission reception points; and

receiving, from the plurality of transmission reception points and based at least in part on a difference between respective durations of the temporal period and the temporal offset period, the physical downlink shared channel according to the physical downlink shared channel multiplexing scheme and one or more of the plurality of transmission configuration indicator states, the one or more receive beams associated with the plurality of transmission configuration indicator states, or one or more default receive beams.

27. The method of claim 26 , further comprising:

identifying a capability relating to the one or more receive beams; and

selecting one or more of the plurality of transmission configuration indicator states, the one or more receive beams associated with the plurality of transmission configuration indicator states, or the one or more default receive beams, based at least in part on the capability,

wherein receiving the physical downlink shared channel is based at least in part on the selecting.

28. The method of claim 27 , further comprising:

including an indication of the temporal period in the capability; and

transmitting the capability carrying the indication of the temporal period.

29. The method of claim 28 , further comprising:

identifying a transmission configuration indicator field in the downlink control information,

wherein the transmission configuration indicator field indicates one or more transmission configuration indicator states of the plurality of transmission configuration indicator states.

30. The method of claim 29 , further comprising:

determining that the temporal offset period is greater than or equal to the temporal period, wherein receiving the physical downlink shared channel comprises:

receiving, based at least in part on the temporal offset period being greater than or equal to the temporal period, the physical downlink shared channel according to the one or more transmission configuration indicator states of the plurality of transmission configuration indicator states.

31. The method of claim 26 , wherein the temporal offset period comprises a duration from an ending symbol of the physical downlink control channel carrying the downlink control information to a beginning symbol of the physical downlink shared channel, wherein the physical downlink control channel schedules the physical downlink shared channel.

32. The method of claim 26 , further comprising:

determining that the temporal offset period is lesser than the temporal period;

receiving, based at least in part on that the temporal offset period being lesser than the temporal period, a first data sample set in accordance with the one or more default receive beams and the physical downlink shared channel multiplexing scheme; and

receiving, based at least in part on that the temporal offset period being lesser than the temporal period, a second data sample set in accordance with the one or more default receive beams and the physical downlink shared channel multiplexing scheme.

33. The method of claim 32 , further comprising:

storing one or more of the first data sample set or the second data sample set based at least in part on that the temporal offset period being lesser than the temporal period, wherein the stored first data sample set or the stored second data sample set correspond to a first antenna panel or a second antenna panel.

34. The method of claim 32 , further comprising:

processing one or more of the first data sample set or the second data sample set based at least in part on the physical downlink shared channel multiplexing scheme, wherein the physical downlink shared channel multiplexing scheme comprises a space division multiplexing scheme.

35. The method of claim 32 , further comprising:

processing one or more of the first data sample set or the second data sample set based at least in part on the plurality of transmission configuration indicator states.

36. The method of claim 32 , further comprising:

processing one or more of the first data sample set or the second data sample set based at least in part on the physical downlink shared channel multiplexing scheme, wherein the physical downlink shared channel multiplexing scheme comprises a frequency division multiplexing scheme, wherein processing one or more of the first data sample set or the second data sample set comprises:

processing the first data sample set in a first set of resource blocks corresponding to a first transmission configuration indicator state of the plurality of transmission configuration indicator states; and

processing the second data sample set in a second set of resource blocks corresponding to a second transmission configuration indicator state of the plurality of transmission configuration indicator states.

37. The method of claim 32 , further comprising:

processing one or more of the first data sample set or the second data sample set based at least in part on the physical downlink shared channel multiplexing scheme, wherein the physical downlink shared channel multiplexing scheme comprises a time division multiplexing scheme, wherein processing one or more of the first data sample set or the second data sample set comprises:

processing the first data sample set in a first set of transmission time intervals corresponding to a first transmission configuration indicator state of the plurality of transmission configuration indicator states; and

processing the second data sample set in a second set of set of transmission time intervals corresponding to a second transmission configuration indicator state of the plurality of transmission configuration indicator states.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 23, 2021
From: KHOSHNEVISAN, MOSTAFA; GAAL, PETER; ZHANG, XIAOXIA; ZHOU, YAN; LUO, TAO; SUN, JING; CHENDAMARAI KANNAN, ARUMUGAM
To: QUALCOMM INCORPORATED
Reel/Frame 056017/0750 →
Continuity (2)
Provisional Application 62914403 · Oct 11, 2019
Related Publication 20210112560A1 · Apr 15, 2021
Cited By (1)
US 12,225,567