IP Library Granted Patent US 10,368,266
Granted Patent B2
US 10,368,266 · App. 15/851,631 · Granted Jul 30, 2019

Efficient uplink scheduling mechanisms for dual connectivity

Inventors: Prateek Basu Mallick (Langen, DE); Joachim Loehr (Wiesbaden, DE); Hidetoshi Suzuki (Kanagawa, JP)
Assignee: Sun Patent Trust
H04W28/0278H04W16/32H04W28/085H04W72/0413H04W80/02H04W80/06H04W84/045
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Quick Facts
Patent No.
US 10,368,266
App. No.
15/851,631
Granted
Jul 30, 2019
Kind
B2
Abstract

The present disclosure mainly relates to improvements for the buffer status reporting and the logical channel prioritization procedures performed in the UE, in scenarios where the UE is in dual connectivity and the PDCP layer of the UE is shared in the uplink for MeNB and SeNB. According to the present disclosure, a ratio is introduced according to which the buffer values for the PDCP are split in the UE between the SeNB and the MeNB according to said ratio.

Claims (25)

1. A mobile node comprising:

circuitry, which, in operation,

connects to a master base station and to a secondary base station via a split bearer that is split between the master base station and the secondary base station in a Packet Data Convergence Protocol (PDCP) layer;

determines whether a total buffer occupancy of the PDCP layer in the mobile node exceeds a threshold;

responsive to the total buffer occupancy exceeding the threshold, splits the total buffer occupancy of the PDCP layer into both a first PDCP buffer occupancy value for the master base station and a second PDCP buffer occupancy value for the secondary base station;

responsive to the total buffer occupancy not exceeding the threshold, splits the total buffer occupancy of the PDCP layer based on a defined split ratio into a first PDCP buffer occupancy value for the master base station and a second PDCP buffer occupancy value for the secondary base station, wherein the defined split ratio is configured such that one of the first and second PDCP buffer occupancy values is equal to the total buffer occupancy, and the other one of the first and second PDCP buffer occupancy values is equal to zero; and

a transmitter, which is coupled to the circuitry and which, in operation, transmits a first buffer status report based on the first PDCP buffer occupancy value to the master base station responsive to the first buffer occupancy value being more than zero, and a second buffer status report based on the second PDCP buffer occupancy value to the secondary base station responsive to the second buffer occupancy value being more than zero.

2. The mobile node according to claim 1 , wherein the defined split ratio is configured by a Radio Resource Control (RRC) message.

3. The mobile node according to claim 2 , wherein the transmitter transmits all uplink data, processed by the PDCP layer, to either the master base station or to the secondary base station depending on the defined split ratio, with an exception of RLC uplink data being transmitted to the master base station and to the secondary base station, respectively.

4. The mobile node according to claim 1 , wherein the defined split ratio is 1:0 or 0:1.

5. The mobile node according to claim 1 , wherein transmission of the first buffer status report to the master base station and transmission of the second buffer status report to the secondary base station are independent of each other.

6. The mobile node according to claim 1 , wherein the threshold is configured by a Radio Resource Control (RRC) message.

7. A method performed by a mobile node, the method comprising:

connecting to a master base station and to a secondary base station via a split bearer that is split between the master base station and the secondary base station in a Packet Data Convergence Protocol (PDCP) layer;

determining whether a total buffer occupancy of the PDCP layer in the mobile node exceeds a threshold;

responsive to the total buffer occupancy exceeding the threshold, splitting the total buffer occupancy of the PDCP layer into both a first PDCP buffer occupancy value for the master base station and a second PDCP buffer occupancy value for the secondary base station;

responsive to the total buffer occupancy not exceeding the threshold, splitting the total buffer occupancy of the PDCP layer based on a defined split ratio into a first PDCP buffer occupancy value for the master base station and a second PDCP buffer occupancy value for the secondary base station, wherein the defined split ratio is configured such that one of the first and second PDCP buffer occupancy values is equal to the total buffer occupancy, and the other one of the first and second PDCP buffer occupancy values is equal to zero;

transmitting a first buffer status report based on the first PDCP buffer occupancy value to the master base station responsive to the first buffer occupancy value being more than zero; and

transmitting a second buffer status report based on the second PDCP buffer occupancy value to the secondary base station responsive to the second buffer occupancy value being more than zero.

8. The method according to claim 7 , wherein the defined split ratio is configured by a Radio Resource Control (RRC) message.

9. The method according to claim 8 , comprising:

transmitting all uplink data, processed by the PDCP layer, to either the master base station or to the secondary base station depending on the defined split ratio, with an exception of RLC uplink data being transmitted to the master base station and to the secondary base station, respectively.

10. The method according to claim 7 , wherein the defined split ratio is 1:0 or 0:1.

11. The method according to claim 7 , wherein transmission of the first buffer status report to the master base station and transmission of the second buffer status report to the secondary base station are independent of each other.

12. The method according to claim 7 , wherein the threshold is configured by a Radio Resource Control (RRC) message.

Priority Claims (2)
EP 13004707 · Sep 27, 2013 · regional
EP 13198976 · Dec 20, 2013 · regional
Continuity (2)
Continuation 15024751
Related Publication 20180139646A1 · May 17, 2018
Cited By (2)
US 12,363,591 US 12,471,162