CAMEL

Customised Applications for Mobile network Enhanced Logic

Services →
Introduced in R99 Also in: Core Network, Management

CAMEL is a 3GPP intelligent network standard that enables real-time, operator-defined services like prepaid charging and call control for roaming subscribers across GSM, UMTS, and LTE networks.

Category
Services
Introduced
R99
Where
Services › IMS
Also touches
2 segments
Specifications
41 specs
CAMEL Description Purpose Related Classification Specifications

Description

CAMEL (Customised Applications for Mobile network Enhanced Logic) is a 3GPP standard that extends Intelligent Network (IN) concepts to mobile networks, specifically GSM, GPRS, UMTS, and IMS. It provides a standardized mechanism for network operators to offer operator-specific, value-added services to subscribers, even when they are roaming outside their home network. The core principle is the separation of service logic from the basic call and session control functions of the network switches (MSC/VLR, SGSN, GGSN). This separation allows for the centralized creation, deployment, and management of complex services without requiring upgrades to every network node.

The CAMEL architecture is built around the interaction between network entities using the CAMEL Application Part (CAP) protocol, which is an extension of SS7/SIGTRAN. Key functional components include the CAMEL Service Environment (CSE) or Service Control Function (SCF), which hosts the service logic, and the Service Switching Function (SSF) embedded in network switches like the MSC/VLR or GMSC. The SSF detects trigger points (Detection Points) during call or session processing and suspends the local processing to request instructions from the remote SCF via CAP. The SCF then returns instructions (e.g., connect, continue, play announcement, apply charging) to the SSF, which executes them, enabling real-time, event-driven service control.

CAMEL operates through a series of phases and trigger detection points defined for different types of calls and sessions, such as Mobile Originated, Mobile Terminated, and Forwarded calls. It supports multiple phases like call setup, alerting, answer, and disconnect. For packet-switched domains, CAMEL Phase 3 and later introduced control for GPRS sessions and SMS, allowing for services like prepaid data charging. The protocol defines a rich set of operations and parameters for charging control, event notification, and call manipulation, making it a comprehensive toolkit for IN-style services.

Its role in the network is foundational for monetization and service differentiation. It is the underlying technology enabling real-time prepaid billing, which is critical for many markets. It also supports advanced call control services like Freephone, Premium Rate, Virtual Private Networks (VPN), and location-based services. By providing a standardized interface, CAMEL ensures interoperability between equipment from different vendors and between different network operators, which is essential for seamless roaming and consistent service delivery.

Purpose & Motivation

CAMEL was created to address the limitations of traditional, switch-based service provisioning in mobile networks. Before CAMEL, advanced telephony services were implemented directly within the software of Mobile Switching Centers (MSCs), making them vendor-specific, difficult to create, and costly to deploy uniformly across a network. This approach also failed completely for roaming subscribers, as the visited network's MSCs had no knowledge of the home operator's custom services. There was a clear need for a standardized, network-wide platform to develop and execute custom service logic independently of the underlying switch infrastructure.

The primary problem CAMEL solves is enabling real-time, operator-specific service control for subscribers regardless of their location. This was driven by the commercial need for prepaid services, which require immediate credit checking and deduction during a call or data session. Without a system like CAMEL, implementing prepaid across a multi-vendor network and for roaming users was nearly impossible. CAMEL provided the architectural framework and protocol (CAP) to separate service logic (hosted in a centralized SCF) from call switching functions, allowing for centralized service creation and consistent execution at home and abroad.

Historically, CAMEL built upon fixed-line Intelligent Network (IN) standards like ITU-T's CS-1 but adapted them for the unique requirements of mobile networks, such as mobility management, handover, and roaming. Its introduction in 3GPP Release 99 (CAMEL Phase 3) marked a significant evolution, extending support to the packet-switched domain (GPRS) and SMS, thereby future-proofing the standard for data services. CAMEL addressed the limitations of previous proprietary IN solutions by creating a uniform, 3GPP-specified interface, fostering interoperability and accelerating the deployment of advanced revenue-generating services globally.

Classification

Related approachesIMS

Release Timeline

Evolution Across Releases

R99 Initial

Introduced CAMEL Phase 3, which was a major expansion. It added support for the GPRS packet-switched domain, enabling prepaid data services and control of GPRS sessions and SMS. It also enhanced circuit-switched control with new detection points and capabilities for optimal routing and in-call modifications.

Enhanced CAMEL support for the evolving core network. Introduced capabilities for control in the evolving All-IP core network architecture, including interactions with the IP Multimedia Subsystem (IMS) foundations and support for Mobility Management events.

Enhanced support for Mission Critical Communication and Network Functions Virtualization (NFV). Defined CAMEL interactions for critical communication services and considered impacts of virtualized network function deployments on CAMEL architecture.

Explore further

Broader topics and technologies where CAMEL plays a role.

Defining Specifications

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

SpecificationTitleRelease
TR 21.905 vj00 3GPP Technical Terms and Definitions Rel-19
TR 21.978 v1300 CAMEL Control of VoIP Services Feasibility Study Rel-4
TS 22.038 vj00 USIM Application Toolkit (USAT) Stage 1 Rel-19
TS 22.105 vj00 Telecommunication Services Framework Rel-19
TS 22.121 v1400 Virtual Home Environment Requirements Rel-5
TS 22.127 v1900 Open Service Access (OSA) Requirements Rel-9
TS 22.228 vj00 IP Multimedia Service Requirements Rel-19
TS 23.031 vj00 Fraud Information Gathering System (FIGS) - Stage 2 Rel-19
TS 23.078 vj00 CAMEL Phase 4 Stage 2 Specification Rel-19
TS 23.127 v1600 Virtual Home Environment Stage 2 Specification Rel-6
TS 23.141 vj00 Presence Service Stage 2 Architecture Rel-19
TS 23.171 v1300 LCS Stage 2 Specification for UMTS Rel-4
TS 23.172 vj00 Service Change and UDI Fallback (SCUDIF) Rel-19
TS 23.218 vj00 IMS Call Model Specification Rel-19
TS 23.226 vj00 Global Text Telephony (GTT) Stage 2 Rel-19
TS 23.228 vj50 IMS Stage-2 Service Description Rel-19
TS 23.271 vj00 LCS Stage 2 Specification Rel-19
TS 23.278 vj00 CAMEL for IMS Stage 2 Specification Rel-19
TS 23.417 v1700 IMS Core Component for NGN Architecture Rel-7
TS 23.517 v1800 IMS Core Component for NGN Architecture Rel-8
TS 23.806 v1700 Voice Call Continuity between CS and IMS Rel-7
TR 23.923 v1300 Mobile IP+ Feasibility Study for UMTS/GPRS Rel-4
TS 24.206 v1700 Voice Call Continuity Between CS and IMS Rel-7
TS 24.259 vj00 Personal Network Management (PNM) Protocol Details Rel-19
TS 24.292 vj00 IMS Centralized Services (ICS) Protocol Rel-19
TS 25.305 vj00 UTRAN UE Positioning Stage 2 Rel-19
TS 29.198 v1900 OSA API Overview Specification Rel-9
TS 32.102 vj00 Telecom Management Physical Architecture Framework Rel-19
TS 32.240 vj40 Charging Management Architecture & Principles Rel-19
TS 32.250 vj00 Circuit Switched Offline Charging Rel-19
TS 32.251 vj00 PS Domain Charging Management Rel-19
TS 32.272 vj00 Charging for Push-to-Talk over Cellular (PoC) Rel-19
TS 32.276 vj00 VCS Online Charging from Proxy Function Rel-19
TS 32.280 vj00 Advice of Charge (AoC) Framework Rel-19
TS 32.281 vj00 Announcement Service for Online Charging Rel-19
TS 32.293 vj00 Proxy Function in Domestic Service Provider Rel-19
TS 32.296 vj00 Online Charging System (OCS) Architecture Rel-19
TS 32.297 vj00 Charging Data Record File Transfer Rel-19
TS 32.408 vj00 UMTS/GSM Performance Management Measurements Rel-19
TS 32.808 v1800 Common User Profile Storage Framework Rel-8
TS 32.850 ve00 IMS Charging Correlation Methods Study Rel-14
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.