IP Library › Granted Patent US 11,050,674
Granted Patent B2
US 11,050,674 · App. 16/534,862 · Granted Jun 29, 2021

Efficient discard mechanism in small cell deployment

Inventors: Prateek Basu Mallick (Langen, DE); Joachim Loehr (Langen, DE)
Assignee: Sun Patent Trust
H04L47/32H04L47/564H04W16/32H04W28/06H04W28/08
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Quick Facts
Patent No.
US 11,050,674
App. No.
16/534,862
Granted
Jun 29, 2021
Kind
B2
Abstract

The invention relates to a method for efficiently discarding data packets destined to a mobile station connected to both a master base station and a secondary base station. The master base station configures a secondary discard function in a lower layer of the secondary base station, based on the master discard function in the higher layer of the master base station. The master base station forwards the data packet from the higher layer to the lower of the secondary base station. The secondary discard function of the lower layer at the secondary base station discards the received data packet upon expiry of the secondary timer started by the lower layer upon reception of the data packet from the higher layer at the master base station.

Claims (22)

1. An entity of an evolved packet core (EPC) comprising:

control circuitry, which, responsive to an Evolved-UMTS Terrestrial Radio Access Network (E-UTRAN) supporting a dual connectivity operation in which a mobile station is connectable to a master base station and a secondary base station, establishes a S 1 -U connection with the master base station and does not establish the S1-U connection with the secondary base station for a second bearer (bearer #2), which is separate from a first bearer (bearer #1) and which is configured in the master base station for the secondary base station, wherein the second bearer is either split in the master base station to be transmitted via both the master base station and the secondary base station, or is not split in the master base station to be transmitted only via the secondary base station; and

a transmitter, which is coupled to the control circuitry and which, in operation, transmits to the master base station via the S1-U connection data packets, which the master base station forwards to the secondary base station via an X2 interface;

wherein,

the master base station is configured to transmit the data packets destined for the mobile station via the secondary base station to the mobile station in the dual connectivity operation;

the master base station transmits the data packets as PDCP PDUs (Packet Data Convergence Protocol, Protocol Data Units) received via the S1-U connection to the secondary base station via the X2 interface;

the master base station receives an indication from the secondary base station, the indication including first information on the PDCP PDUs transmitted from the master base station and successfully delivered by the secondary base station to the mobile station and second information on the PDCP PDUs transmitted from the master base station and unsuccessfully delivered by the secondary base station to the mobile station;

the first information includes a highest sequence number of the PDCP PDU successfully delivered by the secondary base station to the mobile station and the second information includes sequence numbers of an oldest lost PDCP PDU and a most recently lost PDCP PDU such that the sequence numbers indicate a range of consecutively lost PDCP PDUs; and

the master base station considers buffer capacity of the secondary base station in controlling the secondary base station.

2. The entity according to claim 1 , wherein the master base station receives the indication from the secondary base station for respective bearers.

3. The entity according to claim 1 , wherein the master base station removes buffered PDCP PDUs according to the first information on the successfully delivered PDCP PDUs.

4. A method implemented by an entity of an evolved packet core (EPC), the method comprising:

responsive to an Evolved-UMTS Terrestrial Radio Access Network (E-UTRAN) supporting a dual connectivity operation in which a mobile station is connectable to a master base station and a secondary base station, establishing a Sl-U connection only with the master base station and not establishing the S1-U connection with the secondary base station for a second bearer (bearer #2), which is separate from a first bearer (bearer #1) and which is configured in the master base station for the secondary base station, wherein the second bearer is either split in the master base station to be transmitted via both the master base station and the secondary base station, or is not split in the master base station to be transmitted only via the secondary base station; and

transmitting to the master base station via the S1-U connection data packets, which the master base station forwards to the secondary base station via an X2 interface;

wherein,

the master base station is configured to transmit the data packets destined for the mobile station via the secondary base station to the mobile station in the dual connectivity operation;

the master base station transmits the data packets as PDCP PDUs (Packet Data Convergence Protocol, Protocol Data Units) received via the Sl-U connection to the secondary base station via the X2 interface;

the master base station receives an indication from the secondary base station, the indication including first information on the PDCP PDUs transmitted from the master base station and successfully delivered by the secondary base station to the mobile station and second information on the PDCP PDUs transmitted from the master base station and unsuccessfully delivered by the secondary base station to the mobile station;

the first information includes a highest sequence number of the PDCP PDU successfully delivered by the secondary base station to the mobile station and the second information includes sequence numbers of an oldest lost PDCP PDU and a most recently lost PDCP PDU such that the sequence numbers indicate a range of consecutively lost PDCP PDUs; and

the master base station considers buffer capacity of the secondary base station in controlling the secondary base station.

5. The method according to claim 4 , wherein the master base station receives the indication from the secondary base station for respective bearers.

6. The method according to claim 4 , wherein the master base station removes buffered PDCP PDUs according to the first information on the successfully delivered PDCP PDUs.

Priority Claims (2)
EP 13177864 · Jul 24, 2013 · regional
EP 14167783 · May 9, 2014 · regional
Continuity (3)
Continuation 15922750 · Mar 15, 2018
Continuation 14906888
Related Publication 20190363992A1 · Nov 28, 2019