IP Library Granted Patent US 10,512,095
Granted Patent B2
US 10,512,095 · App. 15/994,154 · Granted Dec 17, 2019

User equipment and methods of bearer operation for carrier aggregation

Inventors: Yujian Zhang (Beijing, CN); Youn Hyoung Heo (San Jose, CA)
Assignee: Intel IP Corporation
H04W72/10H04B17/318H04J3/1694H04L5/0007H04W4/023H04W4/60H04W4/80H04W4/90H04W8/005H04W8/06H04W8/183H04W24/10H04W28/0215H04W28/08H04W36/0055H04W36/0069H04W48/06H04W48/08H04W48/12H04W48/18H04W52/346H04W56/001H04W56/002H04W60/00H04W60/02H04W72/048H04W72/0453H04W72/0486H04W72/085H04W74/004H04W74/0833H04W76/10H04W76/14H04W76/15H04W76/18H04W76/19H04B7/0413H04L5/001H04L5/0098H04W8/04H04W84/12H04W88/02H04W88/08H04W88/16H04W88/18H04W92/20Y02D70/126
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Quick Facts
Patent No.
US 10,512,095
App. No.
15/994,154
Granted
Dec 17, 2019
Kind
B2
Abstract

Embodiments of a User Equipment (UE) to support dual-connectivity with a Master Evolved Node-B (MeNB) and a Secondary eNB (SeNB) are disclosed herein. The UE may receive downlink traffic packets from the MeNB and from the SeNB as part of a split data radio bearer (DRB). At least a portion of control functionality for the split DRB may be performed at each of the MeNB and the SeNB. The UE may receive an uplink eNB indicator for an uplink eNB to which the UE is to transmit uplink traffic packets as part of the split DRB. Based at least partly on the uplink eNB indicator, the UE may transmit uplink traffic packets to the uplink eNB as part of the split DRB. The uplink eNB may be selected from a group that includes the MeNB and the SeNB.

Claims (46)

1. An apparatus of a user equipment (UE) configured for dual connectivity with a Master evolved Node-B (MeNB) and a Secondary evolved Node-B (SeNB), the apparatus comprising:

processing circuitry configured to:

decode downlink traffic packets received from the MeNB and from the SeNB as part of a split data radio bearer (DRB), wherein the split DRB is associated with two radio link control (RLC) entities;

decode a Radio Resource Control (RRC) signaling received from the MeNB, the RRC signalling including a first indicator specifying whether the UE is to transmit uplink traffic packets on a Secondary Cell Group (SCG) supported by the SeNB, and a second indicator specifying a Packet Data Convergence Protocol (PDCP) timer for reordering downlink traffic packets received out of sequence as part of the split DRB; and

based at least partly on the first indicator, encode the uplink traffic packets for transmission to a Master Cell Group (MCG) supported by the MeNB or the SCG as part of the split DRB; and

memory coupled to the processing circuitry, the memory configured to store the first and second indicators.

2. The apparatus of claim 1 , wherein the split DRB operates as part of a Secondary Cell (SCell) included in the SCG supported by the SeNB and a Primary Cell (PCell) included in the MCG supported by the MeNB.

3. The apparatus of claim 2 , wherein the processing circuitry is further configured to:

encode the uplink traffic packets for transmission to the MeNB when the first indicator indicates packet data units may not be communicated via the SCG.

4. The apparatus of claim 2 , wherein the processing circuitry is further configured to:

encode the uplink traffic packets for transmission to the SeNB when the first indicator indicates packet data units may be communicated via the SCG.

5. The apparatus of claim 1 , wherein the processing circuitry is configured to:

bypass reordering of the downlink traffic packets received out of sequence based on the second indicator.

6. The apparatus of claim 5 , wherein the second indicator is set to a value of zero as part of the bypass.

7. The apparatus of claim 1 , wherein the uplink traffic packets include one or more PDCP Service Data Units (SDUs).

8. The apparatus of claim 1 , wherein the processing circuitry is further configured to:

exchange traffic packets with the MeNB on a primary cell (PCell) as part of a second, different DRB.

9. The apparatus of claim 1 , wherein the processing circuitry is further configured to:

transmit, for reception at the indicated uplink eNB, a Radio Link Control (RLC) status Protocol Data Unit (PDU) that includes status information for the split DRB.

10. The apparatus of claim 1 , wherein the processing circuitry is further configured to:

exchange control messages with the MeNB on a Primary Cell (PCell) included in the MCG supported by the MeNB.

11. A non-transitory computer readable storage device including instructions stored thereon, which when executed by one or more processors of a User Equipment (UE), cause the UE to perform operations to:

decode downlink traffic packets received from a Master evolved Node-B (MeNB) and from a Secondary evolved Node-B (SeNB) as part of a split data radio hearer (DRB), wherein the split DRB is associated with two radio link control (RLC) entities;

decode a Radio Resource Control (RRC) signaling received from the MeNB, the RRC signalling including a first indicator specifying whether the UE is to transmit uplink traffic packets on a Secondary Cell Group (SCG) supported by the SeNB, and a second indicator specifying a Packet Data Convergence Protocol (PDCP) timer for reordering downlink traffic packets received out of sequence as part of the split DRB; and

based at least partly on the first indicator, encode the uplink traffic packets for transmission to a Master Cell Group (MCG) supported by the MeNB or the SCG as part of the split DRB.

12. The non-transitory computer readable storage device of claim 11 , wherein the split DRB operates as part of a Secondary Cell (SCell) included in the SCG supported by the SeNB and a Primary Cell (PCell) included in the MCG supported by the MeNB.

13. The non-transitory computer readable storage device of claim 12 , wherein the instructions further cause the UE to:

encode the uplink traffic packets for transmission to the MeNB when the first indicator indicates packet data units may not be communicated via the SCG.

14. The non-transitory computer readable storage device of claim 12 , wherein the instructions further cause the UE to:

encode the uplink traffic packets for transmission to the SeNB when the first indicator indicates packet data units may be communicated via the SCG.

15. The non-transitory computer readable storage device of claim 11 , wherein the instructions further cause the UE to:

bypass reordering of the downlink traffic packets received out of sequence based on the second indicator.

16. The non-transitory computer readable storage device of claim 15 , wherein the second indicator is set to a value of zero as part of the bypass.

17. The non-transitory computer readable storage device of claim 11 , wherein the uplink traffic packets include one or more PDCP Service Data Units (SDUs).

18. The non-transitory computer readable storage device of claim 11 , wherein the instructions further cause the UE to:

exchange traffic packets with the MeNB on a primary cell (PCell) as part of a second, different DRB.

19. The non-transitory computer readable storage device of claim 11 , wherein the instructions further cause the UE to:

transmit, for reception at the indicated uplink eNB, a Radio Link Control (RLC) status Protocol Data Unit (PDU) that includes status information for the split DRB.

20. The non-transitory computer readable storage device of claim 11 , wherein the instructions further cause the UE to:

exchange control messages with the MeNB on a Primary Cell (PCell) included in the MCG supported by the MeNB.

21. An apparatus of a user equipment (UE) configured for dual connectivity with a Master evolved Node-B (MeNB) and a Secondary evolved Node-B (SeNB), the apparatus comprising:

processing circuitry configured to:

decode downlink traffic packets received from the MeNB and from the SeNB as part of a split data radio bearer (DRB), wherein the split DRB is associated with two radio link control (RLC) entities;

decode a Radio Resource Control (RRC) signaling received from the MeNB, the RRC signalling including an indicator specifying whether the UE is to transmit uplink traffic packets on a Secondary Cell Group (SCG) supported by the SeNB; and

based at least partly on the indicator, encode the uplink traffic packets for transmission to a Master Cell Group (MCG) supported by the MeNB or the SCG as part of the split DRB; and

memory coupled to the processing circuitry, the memory configured to store the indicator.

Assignments (2)
CONFIRMATORY ASSIGNMENT Recorded Aug 11, 2020
From: INTEL IP CORPORATION
To: INTEL CORPORATION
Reel/Frame 053455/0489 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 25, 2020
From: INTEL CORPORATION
To: APPLE INC.
Reel/Frame 053065/0418 →
Continuity (3)
Continuation 14917154
Provisional Application 61898425 · Oct 31, 2013
Related Publication 20180317237A1 · Nov 1, 2018