LIR

Location Information Request

Services →
Introduced in R99 Also in: Services

LIR is a request message used by an application or network node to query the network for the geographic or civic location of a mobile device, triggering various positioning methods.

Category
Services
Introduced
R99
Where
Core Network › 5G Core
Also touches
1 segments
Specifications
11 specs
LIR Description Purpose Detected Changes Specifications

Description

A Location Information Request (LIR) is a core procedural element within 3GPP architectures for obtaining the position of a mobile device. It is not a single protocol message but a conceptual service request that is realized through specific protocols and interfaces, such as the LTE Positioning Protocol (LPP) over the SLs interface, or the OMA SUPL protocol, or via core network interfaces like the Gateway Mobile Location Centre (GMLC) using the Le or SLg interfaces. An LIR is initiated by a Location Service (LCS) Client, which could be an external application (e.g., a mapping service), an internal network service (e.g., for lawful interception), or the UE itself. The request contains parameters such as the target UE's identifier (MSISDN, IMSI), the required Quality of Service (QoS) for the location (e.g., accuracy, response time), and the type of location information needed (e.g., geographic coordinates, civic address).

Upon receiving an LIR, the network's location system engages the appropriate positioning methods. For network-based positioning, the network may use measurements from base stations (e.g., Observed Time Difference of Arrival - OTDOA in LTE, Downlink Time Difference of Arrival - DL-TDOA in 5G). For UE-based positioning, the network provides assistance data (e.g., satellite ephemeris for A-GNSS) to the UE, which then computes its own fix and may report it back. Hybrid methods combine both. The control and coordination of this process are managed by network entities like the Evolved Serving Mobile Location Centre (E-SMLC) in LTE or the Location Management Function (LMF) in 5G. These entities select the positioning method based on the LIR's QoS, UE capabilities, and available network measurements.

The result of processing an LIR is a Location Information Response, which delivers the estimated location data to the requesting client. The entire procedure involves multiple network domains: the core network for client authorization and request routing, the radio access network for measurement collection, and potentially the UE. Privacy is a critical aspect; the network must verify that the LCS Client is authorized to request the location of the specific target UE, based on subscriber privacy settings and regulatory rules. The LIR mechanism is thus the triggering event for a complex, standardized sequence that transforms radio signals or satellite data into a usable geographic location for services.

Purpose & Motivation

The concept of the Location Information Request emerged to standardize how applications and services could programmatically obtain a mobile subscriber's location. Before its standardization, location services were proprietary and fragmented, hindering the development of widespread location-based applications. The primary problem it solves is providing a unified, secure, and reliable interface for authorized entities to request UE location, which is essential for commercial services (friend-finder, location-based advertising), emergency services (E-911/112), and network optimization.

Historically, the need was driven by regulatory mandates for emergency caller location and the commercial potential of location-based services. The LIR framework, evolving since 3GPP Release 99, created a clear architectural separation between the entity requesting location (the LCS Client) and the network's positioning capabilities. This addressed the limitations of ad-hoc solutions by defining standardized protocols (e.g., LPP, SUPL), interfaces (e.g., Le, SLg), and privacy control mechanisms. It enabled a ecosystem where network operators could expose location capabilities to third-party application providers in a controlled manner, fueling innovation in mobile services while ensuring subscriber privacy and network security.

Release Timeline

Detected Changes Across Releases

from 3GPP Change Requests

Specific changes extracted from the „Change history“ tables of 3GPP specifications (1 CRs across 1 releases). Complements the general historical overview above with the evidence-based evolution of this function.

Rel-18 1 change

In Release 18, the LIR (Location Immediate Request) function was enhanced to support location information requests for both T2P (Terminal to Point) and P2T (Point to Terminal) scenarios. This change aligns the procedure with the security requirements specified in TS 33.128. The update ensures the location service request mechanism, which communicates between an LCS client and server for one or more mobile stations, is applicable in these two distinct request directions.

  • Support of location information request for both T2P and P2T requests in alignment with TS 33.128 TS 33.127CR0180

Explore further

Broader topics and technologies where LIR plays a role.

Defining Specifications

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

SpecificationTitleRelease
TS 03.071 v7b0 Location Services (LCS) Stage 2 Description Rel-7
TS 23.171 v1300 LCS Stage 2 Specification for UMTS Rel-4
TS 23.271 vj00 LCS Stage 2 Specification Rel-19
TS 23.273 vj50 5G Location Services Stage 2 Architecture Rel-19
TS 23.380 vj10 IMS Restoration Procedures Rel-19
TS 29.518 vj50 AMF Service Based Interface Protocol Rel-19
TS 29.572 vj50 Nlmf Service Based Interface Stage 3 Rel-19
TR 29.949 vj00 VoLTE IMS Roaming Architecture & Procedures Rel-19
TS 32.808 v1800 Common User Profile Storage Framework Rel-8
TS 33.127 vj50 Lawful Interception Architecture and Functions Rel-19
TS 33.128 vj50 3GPP TS 33.128: Lawful Interception Protocols 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.