IP Library › Granted Patent US 12,520,151
Granted Patent B2
US 12,520,151 · App. 18/109,800 · Granted Jan 6, 2026

User plane integrity protection

Inventors: Monica Wifvesson (Lund, SE); Noamen Ben Henda (Vällingby, SE)
Assignee: Telefonaktiebolaget LM Ericsson (publ)
H04W12/106H04L63/0428H04W76/12
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Quick Facts
Patent No.
US 12,520,151
App. No.
18/109,800
Granted
Jan 6, 2026
Kind
B2
Abstract

A method performed by a user equipment, UE, for enabling user plane integrity protection of data in a packet data convergence protocol, PDCP, in a radio access network is provided. The method includes sending a session establishment request towards a session management node that includes an indication of a user plane integrity protection mode supported by the UE. The method further includes receiving an activation message from a receiving radio access node that includes an indication to the UE to activate the user plane integrity protection mode for a data radio bearer established with the receiving radio access node. Methods performed by a session management node, a target access and mobility node, and a radio access node are also provided.

Claims (28)

1 . A host computer, comprising:

processing circuitry configured to provide user data; and

a communication interface configured to forward the user data to a cellular network for transmission to a user equipment (UE), wherein the cellular network comprises a target access and mobility node for enabling user plane integrity protection of data during a mobility registration update procedure in a packet data convergence protocol, PDCP, in a radio access network, wherein the target access and mobility node is configured to perform operations comprising:

receiving a Protocol Data Unit (PDU) Session Establishment Request from a user equipment, UE, that includes an indication that the UE supports a user plane integrity protection mode for communicating with a radio access node,

wherein the radio access node is an evolved long term evolution radio access node.

2 . The host computer of claim 1 , wherein the user plane integrity protection mode comprises one of:

the UE supports user plane integrity protection in PDCP with the radio access node at a full data rate, and

the UE supports user plane integrity protection in PDCP with the radio access node at a defined rate that is less than the full data rate.

3 . The host computer of claim 1 , wherein the operations further comprise:

receiving a message from a source access and mobility node that includes the indication that the UE supports a user plane integrity protection mode.

4 . A non-transitory computer readable medium comprising instructions that, when executed by a processor in a host computer of a communication system, cause the host computer to perform operations comprising:

providing user data; and

forwarding the user data to a cellular network, via a communication interface, for transmission to a user equipment (UE), wherein the cellular network comprises a target access and mobility node for enabling user plane integrity protection of data during a mobility registration update procedure in a packet data convergence protocol, PDCP, in a radio access network, wherein the target access and mobility node is configured to perform operations comprising:

receiving a Protocol Data Unit (PDU) Session Establishment Request from a user equipment, UE, that includes an indication that the UE supports a user plane integrity protection mode for communicating with a radio access node,

wherein the radio access node is an evolved long term evolution radio access node.

5 . The non-transitory computer readable medium of claim 4 , wherein the user plane integrity protection mode comprises one of:

the UE supports user plane integrity protection in PDCP with the radio access node at a full data rate, and

the UE supports user plane integrity protection in PDCP with the radio access node at a defined rate that is less than the full data rate.

6 . The non-transitory computer readable medium of claim 4 , wherein the operations further comprise receiving a message from a source access and mobility node that includes the indication that the UE supports a user plane integrity protection mode.

7 . A method performed by a host computer in a communication system, comprising:

providing user data; and

forwarding the user data to a cellular network, via a communication interface, for transmission to a user equipment (UE), wherein the cellular network comprises a target access and mobility node for enabling user plane integrity protection of data during a mobility registration update procedure in a packet data convergence protocol, PDCP, in a radio access network, wherein the target access and mobility node is configured to perform operations comprising:

receiving a Protocol Data Unit (PDU) Session Establishment Request from a user equipment, UE, that includes an indication that the UE supports a user plane integrity protection mode for communicating with a radio access node,

wherein the radio access node is an evolved long term evolution radio access node.

8 . The method of claim 7 , wherein the user plane integrity protection mode comprises one of:

the UE supports user plane integrity protection in PDCP with the radio access node at a full data rate, and

the UE supports user plane integrity protection in PDCP with the radio access node at a defined rate that is less than the full data rate.

9 . The method of claim 7 , wherein the operations further comprise receiving a message from a source access and mobility node that includes the indication that the UE supports a user plane integrity protection mode.

Continuity (3)
Continuation 17605335
Provisional Application 62840304 · Apr 29, 2019
Related Publication 20230199495A1 · Jun 22, 2023
References Cited (35)
US 6385589B1 · Trusheim · 2002 [cited by examiner]
US 8370523B1 · Slaughter · 2013 [cited by examiner]
US 10375003B1 · Olsen · 2019 [cited by examiner]
US 11422870B2 · Sureshkumar · 2022 [cited by examiner]
US 11694213B1 · Everly · 2023 [cited by examiner]
US 20090086971A1 · Grayson et al. · 2009 [cited by applicant]
US 20150332062A1 · McReynolds · 2015 [cited by examiner]
US 20190174449A1 · Shan · 2019 [cited by examiner]
US 20200053165A1 · Li et al. · 2020 [cited by applicant]
US 20200250571A1 · Almasan · 2020 [cited by examiner]
US 20200336953A1 · Liu · 2020 [cited by examiner]
US 20210289402A1 · Ke · 2021 [cited by examiner]
US 20220132315A1 · Kolekar et al. · 2022 [cited by applicant]
US 20220132455A1 · Gupta et al. · 2022 [cited by applicant]
US 20220159763A1 · Han et al. · 2022 [cited by applicant]
US 20230164562A1 · Wifvesson et al. · 2023 [cited by applicant]
US 20230186192A1 · Xia · 2023 [cited by examiner]
CA 3086424A1 · 2019 [cited by examiner]
CA 3063251A1 · 2019 [cited by examiner]
EP 2804409A1 · 2014 [cited by applicant]
WO 2018138379A1 · 2018 [cited by applicant]
WO WO2018167307A1 · 2018 [cited by examiner]
WO 2019017836A1 · 2019 [cited by applicant]
WO 2019068644A1 · 2019 [cited by applicant]
WO WO2019193147A1 · 2019 [cited by examiner]
WO 2020091056A1 · 2020 [cited by applicant]
3GPP TR 33.853 V1.0.0, “3rd Generation Partnership Project; Technical Specification Group Services and System Aspects; Key issues and potential solutions for integrity protection of the user plane; (Release 16)”, 3GPP T… [cited by applicant]
3GPP TS 23.401 V15.7.0, “3rd Generation Partnership Project; Technical Specification Group Services and System Aspects; General Packet Radio Service (GPRS) enhancements for Evolved Universal Terrestrial Radio Access Net… [cited by applicant]
3GPP TS 23.501 V15.5.0, “3rd Generation Partnership Project; Technical Specification Group Services and System Aspects; System Architecture for the 5G System; Stage 2 (Release 15)”, 3GPP TS 23.501 V15.5.0, Mar. 2019. [cited by applicant]
3GPP TS 24.501 V15.2.0, “3rd Generation Partnership Project; Technical Specification Group Core Network and Terminals; Non-Access-Stratum (NAS) protocol for 5G System (5GS); Stage 3 (Release 15)”, 3GPP TS 24.501 V15.2.0… [cited by applicant]
3GPP TS 33.501 V15.3.1, “3rd Generation Partnership Project; Technical Specification Group Services and System Aspects; Security architecture and procedures for 5G system (Release 15)”, 3GPP TS 33.501 V15.3.1, Dec. 2018. [cited by applicant]
3GPP TS 33.501 V15.4.0, “3rd Generation Partnership Project; Technical Specification Group Services and System Aspects; Security architecture and procedures for 5G system (Release 15)”, 3GPP TS 33.501 V15.4.0, Mar. 2019. [cited by applicant]
3GPP TS 33.501 V16.3.0, “3rd Generation Partnership Project; Technical Specification Group Services and System Aspects; Security architecture and procedures for 5G system (Release 16)”, 3GPP TS 33.501 V16.3.0, Jul. 2020. [cited by applicant]
Ericsson “UPIP: New solution for interworking handover from EPS to 5GS”, 3GPP TSG-SA3 Meeting #101-e, S3-203379, e-meeting, Nov. 9-20, 2020. [cited by applicant]
NEC, “New key issue on integrity protection capability imbalance in MR-DC scenarios”, 3GPP TSG-SA WG3 Meeting #94Ad-Hoc, S3-190912 (revision of S3-190652), Stockholm (Sweden), Mar. 11-15, 2019. [cited by applicant]