N3AN

Non-3GPP Access Network

Interface →
Introduced in Rel-15

N3AN is the standardized reference point that connects a 5G Core Network to a non-3GPP access network, enabling secure integration of technologies like Wi-Fi into the 5G system.

Category
Interface
Introduced
Rel-15
Where
Core Network › 5G Core
Specifications
3 specs
N3AN Description Purpose Related Classification Detected Changes Specifications

Description

The N3AN is a critical reference point defined in the 5G System (5GS) architecture, specifically between the Non-3GPP Interworking Function (N3IWF) in the core network and the user plane function of a trusted non-3GPP access network. It is not a physical interface but a logical point that standardizes how external, non-cellular networks interconnect with the 5G Core (5GC). The primary protocol stack for N3AN involves IPsec tunnels established over the underlying IP transport. These tunnels carry both control plane signaling (e.g., for NAS messages between the UE and the AMF) and user plane data packets between the UE and the UPF. The N3IWF acts as the termination point in the core, de-encapsulating traffic from the IPsec tunnel and forwarding it to the appropriate 5GC network functions. This architecture allows the 5GC to treat a UE connected via a trusted non-3GPP access (like a carrier-managed Wi-Fi network) similarly to a UE connected via 3GPP Radio Access Network (RAN), enabling key 5GS features like network slicing and consistent QoS to be extended over these alternative accesses.

From a security perspective, the N3AN interface is protected by established IPsec Security Associations (SAs), which provide confidentiality, integrity, and replay protection for all traffic traversing the untrusted IP network between the UE/N3AN access point and the N3IWF. The establishment of these IPsec tunnels is tightly integrated with the 5G authentication and key agreement (5G-AKA or EAP-AKA') procedures. The N3AN's definition ensures that the core network does not need to be aware of the specific link-layer technologies used in the non-3GPP access, as the N3IWF provides a uniform, IP-based interface. This abstraction is key to the 5GS's access-agnostic design principle.

In terms of mobility, the N3AN supports handovers between 3GPP and non-3GPP accesses. When a UE moves, for instance, from a 5G NR cell to a trusted Wi-Fi network, the N3AN provides the continued connectivity path, and the core network can manage the session continuity (e.g., using ATSSS) without the application layer being aware of the underlying access change. The specifications governing N3AN, such as TS 24.502 and TS 29.525, detail the precise message flows, tunnel management procedures, and QoS mapping rules required for this interworking, making it a cornerstone for converged network offerings.

Purpose & Motivation

The N3AN was created to address the fundamental 5G requirement of converged access. Prior to 5G, non-3GPP access (primarily Wi-Fi) was often treated as a separate, second-class network with limited integration, using solutions like S2a-based Trusted WLAN Access to the EPC. This resulted in disjointed user experiences, separate authentication, and an inability to apply consistent cellular-grade policies and charging. The 5G System was designed from the ground up to be access-agnostic, and the N3AN is the realization of that principle for trusted non-3GPP accesses.

Its purpose is to solve the problem of seamless service continuity and unified policy enforcement across heterogeneous networks. By providing a standardized, secure interface, it allows mobile network operators to integrate their Wi-Fi, fixed wireless, or even satellite networks deeply into their 5G service fabric. This enables operators to leverage these alternative networks for traffic offload, coverage extension, and creating multi-access bundled services, all managed from a single 5G core with a unified subscriber identity and policy profile. The N3AN, therefore, is a key enabler for the vision of a truly converged 'one network' experience, breaking down the traditional silos between cellular and other access technologies.

Classification

Part ofN3IWF
Related approachesATSSS

Release Timeline

Detected Changes Across Releases

from 3GPP Change Requests

Specific changes extracted from the „Change history“ tables of 3GPP specifications (10 CRs across 4 releases). Complements the general historical overview above with the evidence-based evolution of this function.

Rel-15 2 changes

In Release 15, the N3AN (Non-3GPP Access Network) function was newly introduced, with its node selection and configuration procedures specified for both trusted (TNGF) and untrusted (N3IWF) access. The release defined the Access Network Discovery Selection Policy (ANDSP), which contains the N3AN node configuration information used by the UE to select an appropriate N3AN node like an N3IWF or ePDG. This framework also included corrections for the N3AN node selection process and its configuration information.

  • Correction for N3AN node selection TS 24.502CR0003
  • Correction on N3AN node configuration information TS 24.502CR0043
Rel-16 2 changes

In Release 16, enhancements were made to the Non-3GPP Access Network (N3AN) node selection procedure to support Standalone Non-Public Networks (SNPNs) and to ensure correct node selection in scenarios involving Lawful Interception (LI). The updates provided specific procedures for a UE to select an N3AN node and a corresponding SNPN when accessing via non-3GPP access.

  • Correction in N3AN node selection involving SNPN TS 24.502CR0148
  • Correct N3AN node selection due to LI TS 24.502CR0120
Rel-17 2 changes

In Release 17, the N3AN function was enhanced by making certain fields within the N3AN node configuration information optional. Furthermore, the specifications were corrected to ensure proper N3AN node selection could occur in scenarios involving permitted home routing.

  • Optional fields of N3AN node configuration information TS 24.526CR0097
  • Correct N3AN node selection due to permitted home routing TS 24.502CR0171
Rel-18 4 changes

In Release 18, the N3AN function was enhanced with specific clarifications and corrections for node selection and configuration. The updates included clarification for EAP messages and control plane packets used for a UE behind a 5G-RG accessing the 5G core via a trusted non-3GPP access network, and corrections to the general N3AN node selection procedure. Furthermore, new selection rules were defined for a UE operating in SNPN access operation mode when using non-3GPP access.

  • Update N3AN node configuration information provisioning TS 24.502CR0222
  • Clarification for EAP messages and control plane packets used for UE behind the 5G-RG accessing 5GC via trusted non-3GPP access network TS 24.502CR0272
  • Correction to N3AN node selection TS 24.526CR0191
  • N3AN node selection for the UE in SNPN access operation mode for non-3GPP access TS 24.526CR0279

Explore further

Broader topics and technologies where N3AN plays a role.

Defining Specifications

3GPP specifications that define or reference N3AN, with the latest known release. Sourced from the 3GPP document catalog — see methodology.

SpecificationTitleRelease
TS 24.502 vj20 5G Core Access via Non-3GPP Networks; Stage 3 Rel-19
TS 24.526 vj30 UE Policies for 5GS; Stage 3 Rel-19
TS 29.525 vj40 5G UE Policy Control Service Stage 3 Rel-19
Patrick Zandl

About the author: Patrick Zandl (b. 1974)

Telecommunications specialist, technology journalist (founder of the Mobil server), and developer who has been running since 2025 — the largest Czech-language resource on AI-assisted programming. Formerly Chief Wizard Architect at Prusa3D and head of development for Turris at CZ.NIC; currently a consultant and instructor on AI implementation in companies.