IP Library › Granted Patent US 11,563,514
Granted Patent B2
US 11,563,514 · App. 16/789,321 · Granted Jan 24, 2023

Dynamic switching between different multi-transmission/reception point schemes

Inventors: Mostafa Khoshnevisan (San Diego, CA); Xiaoxia Zhang (San Diego, CA); Jing Sun (San Diego, CA); Tao Luo (San Diego, CA); Arumugam Chendamarai Kannan (San Diego, CA)
Assignee: QUALCOMM INCORPORATED
H04L1/0013H04L1/1819H04W8/24H04W72/042H04W72/0446H04W72/1273H04W72/1289H04W76/15
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Quick Facts
Patent No.
US 11,563,514
App. No.
16/789,321
Granted
Jan 24, 2023
Kind
B2
Abstract

Methods, systems, and devices for wireless communications are described. In some systems, a network may schedule a user equipment (UE) for multiple transmission/reception point (TRP) communication. The network may transmit a single downlink control information (DCI) message to the UE to dynamically configure multiple transmission configuration indicator (TCI) states for the multiple TRPs. In a first example, the DCI message may include a bit field indicating a set of antenna ports and the multi-TRP scheme for transmission. In a second example, the DCI message may include a separate field indicating the multi-TRP scheme (e.g., based on UE capabilities). In a third example, the DCI may indicate redundancy versions (RVs) for different TRPs in an RV field or across multiple fields. In a fourth example, the DCI may include an indication of a precoding resource block group (PRG) size that may be interpreted differently based on the indicated multi-TRP scheme.

Claims (72)

1. A method for wireless communications, comprising:

generating a first set of bits indicating a plurality of transmission configuration indicator states for communication with a user equipment (UE);

generating a second set of bits indicating a set of antenna ports and a multi-transmission/reception point multiplexing scheme from a set of possible multiplexing schemes for multi-transmission/reception point operation based at least in part on the first set of bits indicating the plurality of transmission configuration indicator states, wherein each multi-transmission/reception point multiplexing scheme from the set of possible multiplexing schemes is a joint or separate rate matching type applicable to a spatial division multiplexing scheme, a frequency division multiplexing scheme, a time division multiplexing scheme, or a combination thereof, the joint or separate rate matching type indicating a quantity of transmissions to be used for the plurality of transmission configuration indicator states; and

transmitting, to the UE, a downlink control information message comprising an indication of the first set of bits and the second set of bits.

2. The method of claim 1 , further comprising:

selecting, from a plurality of lookup tables, a lookup table mapping both the set of antenna ports and the multi-transmission/reception point multiplexing scheme to the second set of bits, wherein the generating the second set of bits is based at least in part on the selecting.

3. The method of claim 2 , further comprising:

configuring the lookup table, the plurality of lookup tables, or a combination thereof; and

transmitting, to the UE, an indication of the lookup table, the plurality of lookup tables, or a combination thereof.

4. The method of claim 1 , wherein the second set of bits further indicates a modulation order for at least one transmission configuration indicator state of the plurality of transmission configuration indicator states.

5. The method of claim 1 , wherein the second set of bits further indicates a redundancy version for a transport block for at least one transmission configuration indicator state of the plurality of transmission configuration indicator states.

6. The method of claim 1 , wherein the multi-transmission/reception point multiplexing scheme comprises a joint spatial division multiplexing scheme, a separate spatial division multiplexing scheme, a joint frequency division multiplexing scheme, a separate frequency division multiplexing scheme, a joint time division multiplexing scheme, a separate time division multiplexing scheme, or a combination thereof.

7. The method of claim 1 , wherein the second set of bits comprises a same quantity of bits as a set of bits indicating a set of antenna ports for single transmission/reception point operation.

8. The method of claim 1 , wherein a lookup table mapping both the set of antenna ports and the multi-transmission/reception point multiplexing scheme to the second set of bits is pre-configured in memory.

9. The method of claim 1 , wherein the multi-transmission/reception point operation comprises communication with the UE by a plurality of transmission/reception points at a network device or distributed across a plurality of network devices.

10. A method for wireless communications at a user equipment (UE), comprising:

receiving, from a network device, a downlink control information message comprising an indication of a first set of bits and a second set of bits;

identifying, using the first set of bits, a plurality of transmission configuration indicator states for communication with the network device; and

identifying, using the second set of bits, a set of antenna ports and a multi-transmission/reception point multiplexing scheme from a set of possible multiplexing schemes for multi-transmission/reception point operation based at least in part on the identifying the plurality of transmission configuration indicator states, wherein each multi-transmission/reception point multiplexing scheme from the set of possible multiplexing schemes is a joint or separate rate matching type applicable to a spatial division multiplexing scheme, a frequency division multiplexing scheme, a time division multiplexing scheme, or a combination thereof, the joint or separate rate matching type indicating a quantity of transmissions to be used for the plurality of transmission configuration indicator states.

11. The method of claim 10 , further comprising:

selecting, from a plurality of lookup tables, a lookup table mapping the second set of bits to both the set of antenna ports and the multi-transmission/reception point multiplexing scheme, wherein the identifying the set of antenna ports and the multi-transmission/reception point multiplexing scheme is based at least in part on the selecting.

12. The method of claim 11 , further comprising:

receiving, from the network device, a configuration of the lookup table, the plurality of lookup tables, or a combination thereof.

13. The method of claim 10 , further comprising:

identifying, using the second set of bits, a modulation order for at least one transmission configuration indicator state of the plurality of transmission configuration indicator states.

14. The method of claim 10 , further comprising:

identifying, using the second set of bits, a redundancy version for a transport block for at least one transmission configuration indicator state of the plurality of transmission configuration indicator states.

15. The method of claim 10 , wherein the multi-transmission/reception point multiplexing scheme comprises a joint spatial division multiplexing scheme, a separate spatial division multiplexing scheme, a joint frequency division multiplexing scheme, a separate frequency division multiplexing scheme, a joint time division multiplexing scheme, a separate time division multiplexing scheme, or a combination thereof.

16. The method of claim 10 , wherein the second set of bits comprises a same quantity of bits as a set of bits indicating a set of antenna ports for single transmission/reception point operation.

17. The method of claim 10 , wherein a lookup table mapping the second set of bits to both the set of antenna ports and the multi-transmission/reception point multiplexing scheme is pre-configured in memory.

18. The method of claim 10 , wherein the multi-transmission/reception point operation comprises communication with a plurality of transmission/reception points at the network device or distributed across a plurality of network devices comprising at least the network device.

19. The method of claim 18 , further comprising:

receiving a plurality of messages from the plurality of transmission/reception points based at least in part on identifying the multi-transmission/reception point multiplexing scheme.

20. An apparatus for wireless communications, comprising:

a processor;

memory coupled with the processor; and

instructions stored in the memory and executable by the processor to cause the apparatus to:

generate a first set of bits indicating a plurality of transmission configuration indicator states for communication with a user equipment (UE);

generate a second set of bits indicating a set of antenna ports and a multi-transmission/reception point multiplexing scheme from a set of possible multiplexing schemes for multi-transmission/reception point operation based at least in part on the first set of bits indicating the plurality of transmission configuration indicator states, wherein each multi-transmission/reception point multiplexing scheme from the set of possible multiplexing schemes is a joint or separate rate matching type applicable to a spatial division multiplexing scheme, a frequency division multiplexing scheme, a time division multiplexing scheme, or a combination thereof, the joint or separate rate matching type indicating a quantity of transmissions to be used for the plurality of transmission configuration indicator states; and

transmit, to the UE, a downlink control information message comprising an indication of the first set of bits and the second set of bits.

21. The apparatus of claim 20 , wherein the instructions are further executable by the processor to cause the apparatus to:

select, from a plurality of lookup tables, a lookup table mapping both the set of antenna ports and the multi-transmission/reception point multiplexing scheme to the second set of bits, wherein the generating the second set of bits is based at least in part on the selecting.

22. The apparatus of claim 21 , wherein the instructions are further executable by the processor to cause the apparatus to:

configure the lookup table, the plurality of lookup tables, or a combination thereof; and

transmit, to the UE, an indication of the lookup table, the plurality of lookup tables, or a combination thereof.

23. The apparatus of claim 20 , wherein the second set of bits further indicates a modulation order for at least one transmission configuration indicator state of the plurality of transmission configuration indicator states.

24. The apparatus of claim 20 , wherein the second set of bits further indicates a redundancy version for a transport block for at least one transmission configuration indicator state of the plurality of transmission configuration indicator states.

25. The apparatus of claim 20 , wherein the multi-transmission/reception point multiplexing scheme comprises a joint spatial division multiplexing scheme, a separate spatial division multiplexing scheme, a joint frequency division multiplexing scheme, a separate frequency division multiplexing scheme, a joint time division multiplexing scheme, a separate time division multiplexing scheme, or a combination thereof.

26. The apparatus of claim 20 , wherein the second set of bits comprises a same quantity of bits as a set of bits indicating a set of antenna ports for single transmission/reception point operation.

27. The apparatus of claim 20 , wherein a lookup table mapping both the set of antenna ports and the multi-transmission/reception point multiplexing scheme to the second set of bits is pre-configured in memory.

28. The apparatus of claim 20 , wherein the multi-transmission/reception point operation comprises communication with the UE by a plurality of transmission/reception points at a network device or distributed across a plurality of network devices.

29. An apparatus for wireless communications at a user equipment (UE), comprising:

a processor;

memory coupled with the processor; and

instructions stored in the memory and executable by the processor to cause the apparatus to:

receive, from a network device, a downlink control information message comprising an indication of a first set of bits and a second set of bits;

identify, using the first set of bits, a plurality of transmission configuration indicator states for communication with the network device; and

identify, using the second set of bits, a set of antenna ports and a multi-transmission/reception point multiplexing scheme from a set of possible multiplexing schemes for multi-transmission/reception point operation based at least in part on the identifying the plurality of transmission configuration indicator states, wherein each multi-transmission/reception point multiplexing scheme from the set of possible multiplexing schemes is a joint or separate rate matching type applicable to a spatial division multiplexing scheme, a frequency division multiplexing scheme, a time division multiplexing scheme, or a combination thereof, the joint or separate rate matching type indicating a quantity of transmissions to be used for the plurality of transmission configuration indicator states.

30. The apparatus of claim 29 , wherein the instructions are further executable by the processor to cause the apparatus to:

select, from a plurality of lookup tables, a lookup table mapping the second set of bits to both the set of antenna ports and the multi-transmission/reception point multiplexing scheme, wherein the identifying the set of antenna ports and the multi-transmission/reception point multiplexing scheme is based at least in part on the selecting.

31. The apparatus of claim 30 , wherein the instructions are further executable by the processor to cause the apparatus to:

receive, from the network device, a configuration of the lookup table, the plurality of lookup tables, or a combination thereof.

32. The apparatus of claim 29 , wherein the instructions are further executable by the processor to cause the apparatus to:

identify, using the second set of bits, a modulation order for at least one transmission configuration indicator state of the plurality of transmission configuration indicator states.

33. The apparatus of claim 29 , wherein the instructions are further executable by the processor to cause the apparatus to:

identify, using the second set of bits, a redundancy version for a transport block for at least one transmission configuration indicator state of the plurality of transmission configuration indicator states.

34. The apparatus of claim 29 , wherein the multi-transmission/reception point multiplexing scheme comprises a joint spatial division multiplexing scheme, a separate spatial division multiplexing scheme, a joint frequency division multiplexing scheme, a separate frequency division multiplexing scheme, a joint time division multiplexing scheme, a separate time division multiplexing scheme, or a combination thereof.

35. The apparatus of claim 29 , wherein the second set of bits comprises a same quantity of bits as a set of bits indicating a set of antenna ports for single transmission/reception point operation.

36. The apparatus of claim 29 , wherein a lookup table mapping the second set of bits to both the set of antenna ports and the multi-transmission/reception point multiplexing scheme is pre-configured in memory.

37. The apparatus of claim 29 , wherein the multi-transmission/reception point operation comprises communication with a plurality of transmission/reception points at the network device or distributed across a plurality of network devices comprising at least the network device.

38. The apparatus of claim 37 , wherein the instructions are further executable by the processor to cause the apparatus to:

receive a plurality of messages from the plurality of transmission/reception points based at least in part on identifying the multi-transmission/reception point multiplexing scheme.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 11, 2021
From: KHOSHNEVISAN, MOSTAFA; ZHANG, XIAOXIA; SUN, JING; LUO, TAO; CHENDAMARAI KANNAN, ARUMUGAM
To: QUALCOMM INCORPORATED
Reel/Frame 055238/0676 →
Continuity (2)
Provisional Application 62805661 · Feb 14, 2019
Related Publication 20200267748A1 · Aug 20, 2020