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Technical contribution describing a hybrid post-quantum cryptography method for SUCI calculation using AEAD, detailing UE and network processing steps and SUCI structure within 3GPP TSG-SA3 standards discussions.
Year:
2026
Location:
Goa, India
Subject:
Mobile network security; SUCI calculation; Post-Quantum Cryptography
Document Type:
Technical contribution
Organization:
3GPP TSG-SA3
Author:
ZTE
Target audience:
3GPP SA3 members and network security experts
Agenda item:
5.2.1
Specification:
3GPP TR 33.703
Version:
0.3.0
Work Item:
FS_CryptoPQC
Date of meeting:
9–13 February 2026
Key topics:
Hybrid PQC encryption, AEAD key derivation, UE and network processing steps, SUCI structure
Notes:
Editor’s evaluations pending for AEAD choice, SUCI length impact, computing overhead, USIM card update scenario
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Year:
2025
Region / City:
Dallas, US
Topic:
Security Algorithms, 5G Systems
Document Type:
Technical Report
Organization / Institution:
3GPP
Author:
vivo
Target Audience:
3GPP participants, security specialists
Period of Validity:
N/A
Approval Date:
N/A
Date of Changes:
N/A
Context:
A technical specification discussing the overview and assumptions for AEAD (Authenticated Encryption with Associated Data) algorithms and their integration in NAS and AS security procedures for 5G systems.
Year:
2026
Region / City:
Goa, IN
Subject:
AEAD Algorithm Negotiation
Document Type:
Technical Report
Organization:
3GPP
Author:
OPP
Target Audience:
3GPP Participants
Approval Date:
TBD
Approval Agenda Item:
5.3.2
Version:
0.2.0
Work Item:
FS_AEAD
Context:
This technical report discusses a solution for AEAD algorithm negotiation in the context of 6G security capabilities and provides a detailed evaluation of potential solutions.
Year:
2025
Region / City:
Cupertino, CA
Subject:
Hybrid Post-Quantum Cryptography (PQC) for IEEE 802.11 Communications
Document Type:
Technical Proposal
Organization:
IEEE
Author:
Jarkko Kneckt, Yong Liu, Yanjun Sun
Target Audience:
Researchers, IEEE 802.11 Working Group members, cryptography experts
Effective Period:
Not specified
Approval Date:
2025-11-11
Modification Date:
Not specified
Year:
2025
Region / City:
Pennsylvania
Topic:
Maternal Health, Postpartum Care
Document Type:
Presentation, Online Resources
Organization:
CDC, PA PQC, AIM, AWHONN, Birth Justice Philly
Author:
Dr. Mehta
Target Audience:
Healthcare providers, Maternal Health Professionals
Action Period:
November 2025
Approval Date:
November 12, 2025
Changes Date:
-
Year:
2026
Location:
Goa, India
Document Type:
Technical Report / Contribution
Organization:
3GPP TSG-SA3
Authors:
Lenovo, Motorola Mobility
Agenda Item:
5.2.11
Purpose:
Approval
References:
3GPP TR 33.703, Post Quantum Cryptography Guidelines Version 2.0, NIST SP 800-227
Technical Scope:
SUCI computation using Hybrid PQC and ECC key derivation
Target Audience:
3GPP SA3 working group members
Related Standard:
TS 33.501
Meeting:
#126
Context:
Describes detailed steps for UE and network processing of SUCI with hybrid post-quantum cryptography and ECC mechanisms, including key derivation and encryption protocols
Year:
2026
Region / City:
Goa, India
Topic:
Post-Quantum Cryptography
Document Type:
Technical Report
Organization:
3GPP
Author:
Qualcomm Incorporated
Target Audience:
Telecommunications professionals
Period of validity:
2026
Approval Date:
2026-02-09
Amendments Date:
N/A
Work Item:
FS_CryptoPQC
Version:
0.3.0
Agenda Item:
5.2.1
Specification:
3GPP TR 33.703
Contextual description:
Technical report discussing a new solution for SUCI calculation using ECIES and MLKEM for post-quantum cryptography.
Year:
2026
Location:
Goa, India
Document Type:
Technical Report / Contribution
Organization:
3GPP TSG-SA3
Authors:
Lenovo, Motorola Mobility
Agenda Item:
5.2.11
Purpose:
Approval
References:
3GPP TR 33.703, Post Quantum Cryptography Guidelines Version 2.0, NIST SP 800-227
Technical Scope:
SUCI computation using Hybrid PQC and ECC key derivation
Target Audience:
3GPP SA3 working group members
Related Standard:
TS 33.501
Meeting:
#126
Context:
Describes detailed steps for UE and network processing of SUCI with hybrid post-quantum cryptography and ECC mechanisms, including key derivation and encryption protocols
Year:
2026
Region / City:
Goa, India
Theme:
Cryptography, Post-Quantum Cryptography
Document Type:
Technical Report
Organization / Institution:
Huawei, HiSilicon, Samsung
Author:
Huawei, HiSilicon, Samsung
Target Audience:
Telecommunications and cryptography professionals
Validity Period:
2026
Approval Date:
2026-02-13
Modification Date:
N/A
Context:
This document proposes a hybrid encryption approach combining post-quantum cryptography and traditional cryptography for SUCI calculation in 5G networks.
Year:
2026
Location:
Goa, India
Subject:
Cryptography, Post-Quantum Security
Document type:
Technical report / meeting document
Organization:
3GPP TSG-SA3
Author:
Qualcomm Incorporated
Work item:
FS_CryptoPQC Comments
Specification:
3GPP TR 33.703, Version 0.3.0
Agenda item:
5.2.1
Target audience:
3GPP members and cryptography engineers
References:
3GPP TR 21.905, 3GPP TR 33.938, 3GPP TS 33.180, 3GPP TS 33.501, PQUIP draft-ietf-pquip-pqc-engineers, IETF RFCs 6509, 9794, 5869, 7748, 9242, 9370, 9593, 9784, 7383, 9763, 9802, NIST IRs 8545, 8547, FIPS 202-205, SECG SEC 1/2, various EU/UK/NSA/ANSSI/ASD/Canadian/Swedish guidelines
Period covered:
February 9–13, 2026
Purpose:
Proposal for hybrid SUCI calculation using ECIES and MLKEM
Year:
2026
Region / City:
Goa, India
Topic:
Post-Quantum Cryptography, Security
Document Type:
Technical Report
Organization / Institution:
3GPP
Author:
Qualcomm Incorporated
Target Audience:
Professionals in Cryptography and Telecommunications
Action Period:
9 – 13 February 2026
Approval Date:
TBD
Date of Changes:
N/A
Year:
2026
Location:
Goa, India
Topic:
SUCI and eSUCI encryption in 5G networks
Document type:
Technical contribution / Draft
Organization:
3GPP TSG-SA3
Author:
vivo
Target audience:
3GPP members, network security engineers
Spec reference:
3GPP TR 33.703
Work item:
FS_CryptoPQC
Version:
0.3.0
Agenda item:
5.2.1
Purpose:
Update on solution #14 for SUCI protection using symmetric quantum-resistant algorithms
Contextual description:
Technical contribution detailing the calculation, format, registration procedure, and evaluation of enhanced SUCI (eSUCI) for secure 5G UE identification and authentication.