IP Library Granted Patent US 11,533,653
Granted Patent B2
US 11,533,653 · App. 16/998,608 · Granted Dec 20, 2022

Mapping multicast broadcast quality of service flows to logical channel identifiers

Inventors: Prasad Reddy Kadiri (San Diego, CA); Alberto Rico Alvarino (San Diego, CA); Xipeng Zhu (San Diego, CA); Umesh Phuyal (San Diego, CA); Gavin Bernard Horn (La Jolla, CA)
Assignee: QUALCOMM INCORPORATED
H04W28/0268H04W4/06H04L12/189
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Quick Facts
Patent No.
US 11,533,653
App. No.
16/998,608
Granted
Dec 20, 2022
Kind
B2
Abstract

Various aspects of the present disclosure generally relate to wireless communication. In some aspects, a user equipment (UE) may receive an indication of a mode for mapping multicast broadcast quality of service (MB-QoS) flows to logical channel identifiers and group radio network temporary identifiers (G-RNTIs); identify an MB-QoS flow from a medium access control (MAC) transport block (TB) based at least in part on the indicated mode; and decode data included in the MB-QoS flow. Numerous other aspects are provided.

Claims (95)

1. A method of wireless communication performed by a user equipment (UE), comprising:

receiving an indication of a mode that maps multicast broadcast quality of service (MB-QoS) flows to logical channel identifiers and group radio network temporary identifiers (G-RNTIs), wherein the indicated mode is one of:

a first mode in which each MB-QoS flow, of a first set of MB-QoS flows, is mapped to a different logical channel identifier and is mapped to a different G-RNTI,

a second mode in which each MB-QoS flow, of a second set of MB-QoS flows, is mapped to a different logical channel identifier and is mapped to a common G-RNTI used for multiple MB-QoS flows, or

a third mode in which each MB-QoS flow, of a third set of MB-QoS flows, is mapped to a different G-RNTI and is mapped to a common logical channel identifier used for multiple MB-QoS flows;

identifying an MB-QoS flow from a medium access control (MAC) transport block (TB) based at least in part on the indicated mode; and

decoding data included in the MB-QoS flow.

2. The method of claim 1 , wherein:

the indicated mode is the first mode; and

the method further comprises identifying the MB-QoS flow from a multicast or broadcast transmission based at least in part on a unique G-RNTI corresponding to the MB-QoS flow.

3. The method of claim 2 , wherein multiple MB-QoS flows are multiplexed in the multicast or broadcast transmission using one of:

a single MAC TB that is transmitted multiple times, wherein each MAC TB transmission is scrambled using a different G-RNTI, or

different MAC TBs corresponding to different logical channel identifiers, wherein each MAC TB is scrambled using a different G-RNTI.

4. The method of claim 1 , wherein:

the indicated mode is the first mode; and

the method further comprises identifying the MB-QoS flow from a unicast transmission based at least in part on a cell RNTI (C-RNTI) and a unique logical channel identifier corresponding to the MB-QoS flow.

5. The method of claim 1 , wherein:

the indicated mode is the second mode; and

the method further comprises identifying the MB-QoS flow from a multicast or broadcast transmission based at least in part on a logical channel identifier corresponding to the MB-QoS flow.

6. The method of claim 5 , wherein multiple MB-QoS flows are multiplexed in the multicast or broadcast transmission using one of:

a single MAC TB scrambled using the common G-RNTI, or

different MAC TBs corresponding to different logical channel identifiers, wherein each MAC TB is scrambled using the common G-RNTI.

7. The method of claim 1 , wherein:

the indicated mode is the second mode; and

the method further comprises identifying the MB-QoS flow from a unicast transmission based at least in part on a cell RNTI (C-RNTI) and a unique logical channel identifier corresponding to the MB-QoS flow.

8. The method of claim 1 , wherein:

the indicated mode is the second mode; and

the second set of MB-QoS flows includes one or more switchable MB-QoS flows that can be switched between a multicast broadcast radio bearer, for a multicast or broadcast transmission, and a dedicated radio bearer for a unicast transmission.

9. The method of claim 1 , wherein:

the indicated mode is the third mode; and

the method further comprises identifying the MB-QoS flow from a multicast or broadcast transmission based at least in part on a unique G-RNTI corresponding to the MB-QoS flow.

10. The method of claim 9 , wherein multiple MB-QoS flows are multiplexed in the multicast or broadcast transmission using one of:

a single MAC TB that is transmitted multiple times, wherein each MAC TB transmission is scrambled using a different G-RNTI, or

different MAC TBs corresponding to the common logical channel identifier, wherein each MAC TB is scrambled using a different G-RNTI.

11. The method of claim 1 , wherein:

the indicated mode is the third mode; and

the method further comprises identifying the MB-QoS flow from a unicast transmission based at least in part on a cell RNTI (C-RNTI), the common logical channel identifier, and a unique G-RNTI corresponding to the MB-QoS flow.

12. The method of claim 1 , wherein:

the indicated mode is the third mode; and

the third set of MB-QoS flows includes one or more non-switchable MB-QoS flows that cannot be switched between a multicast broadcast radio bearer, for a multicast or broadcast transmission, and a dedicated radio bearer for a unicast transmission.

13. The method of claim 1 , wherein:

the indicated mode is the third mode; and

the third set of MB-QoS flows includes one or more switchable MB-QoS flows that can be switched between a multicast broadcast radio bearer, for a multicast or broadcast transmission, and a dedicated radio bearer for a unicast transmission.

14. The method of claim 1 , further comprising receiving an indication of a fourth mode in which each MB-QoS flow, of a fourth set of MB-QoS flows, is mapped to a fixed logical channel identifier used for all MB-QoS flows and is mapped to a multicast broadcast radio bearer identifier that identifies a service type of a respective MB-QoS flow of the fourth set.

15. The method of claim 1 , further comprising identifying the MB-QoS flow based at least in part on a logical channel identifier and at least one of a G-RNTI or a multicast broadcast radio bearer identifier indicated in a MAC packet data unit (PDU) sub-header for the MB-QoS flow.

16. The method of claim 1 , further comprising receiving an indication of a fourth mode in which each MB-QoS flow, of a fourth set of MB-QoS flows, is mapped to a first logical channel identifier and a G-RNTI for multicast or broadcast transmissions and is mapped to a second logical channel identifier and a cell RNTI (C-RNTI) associated with the UE for unicast transmissions,

wherein the first logical channel identifier and the G-RNTI for multicast or broadcast transmissions are configured using a multicast control channel, and the second logical channel identifier and the C-RNTI are configured in a radio resource control message.

17. The method of claim 1 , further comprising receiving an indication of a fourth mode in which each MB-QoS flow, of a fourth set of MB-QoS flows, is mapped to a first logical channel identifier and a G-RNTI for multicast or broadcast transmissions and is mapped to a second logical channel identifier and a cell RNTI (C-RNTI) associated with the UE for unicast transmissions,

wherein the first logical channel identifier, the G-RNTI for multicast or broadcast transmissions, the second logical channel identifier, and the C-RNTI are configured in a radio resource control message.

18. The method of claim 1 , wherein:

the MB-QoS flow is associated with a first logical channel identifier and is configured as a non-switchable MB-QoS flow that cannot be switched between a multicast broadcast radio bearer and a dedicated radio bearer; and

the method further comprises receiving an instruction to reconfigure the MB-QoS flow to a switchable MB-QoS flow that can be switched between the multicast broadcast radio bearer and the dedicated radio bearer, wherein the instruction includes a second logical channel identifier for the MB-QoS flow.

19. The method of claim 18 , further comprising receiving the instruction in at least one of a multicast control channel communication or a radio resource control message.

20. The method of claim 1 , wherein the logical channel identifiers correspond to multicast broadcast traffic channels, and wherein the multicast broadcast traffic channels and a multicast broadcast control channel are carried in a physical downlink shared channel.

21. The method of claim 1 , further comprising performing soft combining of a first MAC TB of the MB-QoS flow received in a multicast or broadcast transmission scrambled using a G-RNTI and a second MAC TB of the MB-QoS flow received in a unicast transmission scrambled using a cell RNTI.

22. The method of claim 21 , further comprising performing the soft combining based at least in part on a determination that the first MAC TB and the second MAC TB carry the same content.

23. A user equipment (UE) for wireless communication, comprising:

a memory; and

one or more processors coupled to the memory, the one or more processors configured to:

receive an indication of a mode that maps multicast broadcast quality of service (MB-QoS) flows to logical channel identifiers and group radio network temporary identifiers (G-RNTIs), wherein the indicated mode is one of:

a first mode in which each MB-QoS flow, of a first set of MB-QoS flows, is mapped to a different logical channel identifier and is mapped to a different G-RNTI,

a second mode in which each MB-QoS flow, of a second set of MB-QoS flows, is mapped to a different logical channel identifier and is mapped to a common G-RNTI used for multiple MB-QoS flows, or

a third mode in which each MB-QoS flow, of a third set of MB-QoS flows, is mapped to a different G-RNTI and is mapped to a common logical channel identifier used for multiple MB-QoS flows;

identify an MB-QoS flow from a medium access control (MAC) transport block (TB) based at least in part on the indicated mode; and

decode data included in the MB-QoS flow.

24. A non-transitory computer-readable medium storing one or more instructions for wireless communication, the one or more instructions comprising:

one or more instructions that, when executed by one or more processors of a user equipment (UE), cause the UE to:

receive an indication of a mode that maps multicast broadcast quality of service (MB-QoS) flows to logical channel identifiers and group radio network temporary identifiers (G-RNTIs), wherein the indicated mode is one of:

a first mode in which each MB-QoS flow, of a first set of MB-QoS flows, is mapped to a different logical channel identifier and is mapped to a different G-RNTI,

a second mode in which each MB-QoS flow, of a second set of MB-QoS flows, is mapped to a different logical channel identifier and is mapped to a common G-RNTI used for multiple MB-QoS flows, or

a third mode in which each MB-QoS flow, of a third set of MB-QoS flows, is mapped to a different G-RNTI and is mapped to a common logical channel identifier used for multiple MB-QoS flows;

identify an MB-QoS flow from a medium access control (MAC) transport block (TB) based at least in part on the indicated mode; and

decode data included in the MB-QoS flow.

25. An apparatus for wireless communication, comprising:

means for receiving an indication of a mode that maps multicast broadcast quality of service (MB-QoS) flows to logical channel identifiers and group radio network temporary identifiers (G-RNTIs), wherein the indicated mode is one of:

a first mode in which each MB-QoS flow, of a first set of MB-QoS flows, is mapped to a different logical channel identifier and is mapped to a different G-RNTI,

a second mode in which each MB-QoS flow, of a second set of MB-QoS flows, is mapped to a different logical channel identifier and is mapped to a common G-RNTI used for multiple MB-QoS flows, or

a third mode in which each MB-QoS flow, of a third set of MB-QoS flows, is mapped to a different G-RNTI and is mapped to a common logical channel identifier used for multiple MB-QoS flows;

means for identifying an MB-QoS flow from a medium access control (MAC) transport block (TB) based at least in part on the indicated mode; and

means for decoding data included in the MB-QoS flow.

26. The UE of claim 23 , wherein:

the indicated mode is the first mode; and

the one or more processors are further configured to identify the MB-QoS flow from a multicast or broadcast transmission based at least in part on a unique G-RNTI corresponding to the MB-QoS flow.

27. The UE of claim 26 , wherein multiple MB-QoS flows are multiplexed in the multicast or broadcast transmission using one of:

a single MAC TB that is transmitted multiple times, wherein each MAC TB transmission is scrambled using a different G-RNTI, or

different MAC TBs corresponding to different logical channel identifiers, wherein each MAC TB is scrambled using a different G-RNTI.

28. The UE of claim 23 , wherein:

the indicated mode is the second mode; and

the one or more processors are further configured to identify the MB-QoS flow from a multicast or broadcast transmission based at least in part on a logical channel identifier corresponding to the MB-QoS flow.

29. The UE of claim 28 , wherein multiple MB-QoS flows are multiplexed in the multicast or broadcast transmission using one of:

a single MAC TB scrambled using the common G-RNTI, or

different MAC TBs corresponding to different logical channel identifiers, wherein each MAC TB is scrambled using the common G-RNTI.

30. The UE of claim 23 , wherein:

the indicated mode is the second mode; and

the one or more processors are further configured to identify the MB-QoS flow from a unicast transmission based at least in part on a cell RNTI (C-RNTI) and a unique logical channel identifier corresponding to the MB-QoS flow.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 19, 2021
From: KADIRI, PRASAD REDDY; RICO ALVARINO, ALBERTO; ZHU, XIPENG; PHUYAL, UMESH; HORN, GAVIN BERNARD
To: QUALCOMM INCORPORATED
Reel/Frame 055967/0570 →
Continuity (2)
Provisional Application 62894582 · Aug 30, 2019
Related Publication 20210068004A1 · Mar 4, 2021