RG

Residential Gateway

Other →
Introduced in Rel-6 Also in: Radio Access Network

RG is a customer premises network device that connects local area networks to a service provider's wide area network, acting as a central hub for internet access to the 3GPP network.

Category
Other
Introduced
Rel-6
Where
Core Network › 5G Core
Also touches
1 segments
Specifications
27 specs
RG Description Purpose Related Classification Specifications

Description

The Residential Gateway (RG) is a customer-premises equipment (CPE) device that serves as the demarcation point between the subscriber's internal local area network (LAN) and the service provider's access network. In 3GPP architectures, particularly for fixed-mobile convergence and broadband access, the RG facilitates connectivity over various access technologies, including DSL, fiber (PON), or wireless (e.g., via 3GPP radio interfaces). It typically incorporates a router with Network Address Translation (NAT) and firewall capabilities, a DHCP server for IP address assignment to connected devices, and often an integrated wireless access point for Wi-Fi connectivity. The RG manages Quality of Service (QoS) policies for traffic prioritization, supports multiple service flows for different applications (like voice, video, and data), and may implement security features such as WPA2/WPA3 for Wi-Fi. In 3GPP specifications, the RG interfaces with network elements like the Broadband Network Gateway (BNG) or User Plane Function (UPF) in 5G systems, using protocols such as PPPoE or IPoE for authentication and session management. Its role is critical in delivering triple-play services (internet, TV, voice) and enabling smart home applications by providing reliable, managed connectivity.

Purpose & Motivation

The Residential Gateway was introduced to provide a standardized, managed endpoint for broadband services in residential and small business environments. It solves the problem of disparate, unmanaged customer equipment that could lead to inconsistent service quality, security vulnerabilities, and complex troubleshooting for operators. By deploying a provider-managed RG, operators can ensure consistent performance, enforce QoS policies, remotely diagnose issues, and offer value-added services like managed Wi-Fi or parental controls. Historically, as broadband services evolved from simple internet access to bundled offerings including IPTV and VoIP, the need for a robust, feature-rich gateway became apparent to handle multiple service flows with different latency and bandwidth requirements. The RG addresses limitations of basic modems by integrating routing, switching, and often wireless capabilities into a single device, simplifying the customer installation and reducing support costs.

Classification

Part ofCPE
Specific typesRGW
Related approachesBNGUPF

Evolution Across Releases

Rel-6 Initial

Introduced the Residential Gateway concept in 3GPP specifications to support fixed broadband access convergence. Initial architecture focused on basic connectivity functions, supporting PPPoE and IPoE for WAN connectivity, with specifications covering management interfaces and basic QoS capabilities for triple-play services.

Explore further

Broader topics and technologies where RG plays a role.

Defining Specifications

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

SpecificationTitleRelease
TS 23.003 vj50 Numbering, addressing and identification in 3GPP Rel-19
TS 23.008 vj00 Organization of Subscriber Data Rel-19
TS 23.139 vj00 3GPP-Fixed Broadband Interworking Stage 2 Rel-19
TS 23.203 vj20 Policy and charging control architecture Rel-19
TS 23.316 vj30 Wireline and Wireless Convergence Access Support Rel-19
TS 23.501 vk00 5G System Architecture Stage 2 Rel-20
TS 23.716 vg00 Wireline and Trusted Non-3GPP Access to 5G Core Rel-16
TS 23.725 vg20 Study on URLLC Architecture Enhancements Rel-16
TS 23.839 vc00 Fixed-Mobile Convergence Architecture Study Rel-12
TS 23.896 vc00 Policy & Charging Control for Fixed Broadband Convergence Rel-12
TS 24.501 vj50 5G NAS Protocols Specification Rel-19
TS 24.524 vj00 Hosted Enterprise Services Architecture Rel-19
TS 25.309 v1600 FDD Enhanced Uplink Support Rel-6
TS 25.319 vj00 Enhanced Uplink for UTRA FDD/TDD Rel-19
TS 25.321 vj00 MAC Protocol Specification for UTRAN Rel-19
TS 25.331 vj00 UTRAN RRC Protocol Specification Rel-19
TS 29.212 vj00 Gx/Gxx/Sd/St Diameter Protocol Rel-19
TS 29.213 vj20 PCC Signalling Flows and QoS Mapping Rel-19
TS 29.215 vj00 S9 Reference Point Stage 3 Specification Rel-19
TS 29.503 vj50 UDM Service Based Interface Stage 3 Rel-19
TS 29.509 vj50 AUSF Service Based Interface Protocol Rel-19
TS 29.561 vj30 5G Interworking with External Data Networks Rel-19
TS 32.251 vj00 PS Domain Charging Management Rel-19
TS 32.298 vj30 Charging Data Record (CDR) Parameter Specification Rel-19
TS 32.833 vb00 Converged OSS End-to-End Management Study Rel-11
TS 32.843 vd00 PS Domain Online Charging in Roaming Rel-13
TR 38.825 vg00 Study on NR Industrial IoT Rel-16
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.