WAAS

Wide Area Augmentation System

Services →
Introduced in Rel-8 Also in: Services

WAAS is a satellite-based augmentation system that enhances GPS signal accuracy for use as a 3GPP-supported positioning method in user equipment.

Category
Services
Introduced
Rel-8
Where
Radio Access Network › NG-RAN (5G)
Also touches
1 segments
Specifications
14 specs
WAAS Description Purpose Related Classification Specifications

Description

The Wide Area Augmentation System (WAAS) is a regional satellite-based augmentation system (SBAS) primarily operated by the Federal Aviation Administration (FAA) to improve the performance of Global Navigation Satellite Systems (GNSS), like GPS, over North America. Within 3GPP specifications, WAAS is referenced as a supported positioning method for User Equipment (UE), enabling more accurate and reliable location determination. The system works by deploying a network of ground reference stations that monitor GPS satellite signals. These stations collect data on errors caused by ionospheric disturbances, satellite clock drift, and ephemeris inaccuracies. The data is processed at master stations to generate correction messages, which are then uplinked to geostationary satellites (GEO satellites) for broadcast to user equipment over the same frequency band as GPS. The UE receives both the standard GPS signals and the WAAS correction messages, applying the corrections in real-time to compute a more precise position. Architecturally, WAAS integration in 3GPP involves the UE's positioning capabilities, where the UE may report its ability to use WAAS (or other SBAS) in positioning protocols like LTE Positioning Protocol (LPP) or NR Positioning Protocol (NRPP). The network can request or assist in WAAS-aided positioning for services such as emergency call location (E911) or commercial location-based services. Key components include the WAAS GEO satellites, ground uplink stations, and the UE's GNSS receiver with SBAS support. Its role is to provide enhanced positioning performance meeting requirements for safety-of-life applications, which demand high integrity, accuracy, and availability beyond what standalone GPS offers.

Purpose & Motivation

WAAS was created to address the limitations of standalone GPS, which lacks sufficient accuracy, integrity, and availability for critical applications, especially in aviation. GPS alone can have errors of several meters, and it does not provide timely warnings when the system is unreliable. WAAS solves these problems by providing differential corrections and integrity monitoring, reducing position errors to less than one meter horizontally and vertically. This enables precision approaches in aviation without requiring ground-based navigation aids. In the 3GPP context, supporting WAAS allows mobile networks to leverage this enhanced positioning capability for emergency services, where accurate location can be life-saving, and for advanced location-based services that require higher precision. The integration into 3GPP standards, beginning in Release 8, was motivated by regulatory requirements for enhanced emergency caller location and the growing demand for precise positioning in various commercial and safety applications, bridging the gap between telecommunications and satellite navigation systems.

Classification

Part ofSBAS

Evolution Across Releases

Rel-8 Initial

Initial support for WAAS was introduced as part of enhanced UE positioning capabilities for LTE. Specifications defined how UE could utilize Satellite-Based Augmentation Systems (SBAS) like WAAS to improve location accuracy, primarily for emergency services and location-based services.

Explore further

Broader topics and technologies where WAAS plays a role.

Defining Specifications

3GPP specifications that define or reference WAAS, 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
TS 22.071 vj00 3GPP TS 22.071: Location Services (LCS) Stage 1 Rel-19
TS 25.305 vj00 UTRAN UE Positioning Stage 2 Rel-19
TS 25.331 vj00 UTRAN RRC Protocol Specification Rel-19
TS 25.423 vj00 UTRAN RNSAP Specification Rel-19
TS 25.433 vj00 Node B Application Part (NBAP) Protocol Rel-19
TS 25.453 vj00 PCAP Protocol Specification Rel-19
TS 36.305 vj00 UE Positioning in E-UTRAN Stage 2 Rel-19
TS 36.355 vj00 LTE Positioning Protocol (LPP) Rel-19
TS 37.355 vj20 LTE Positioning Protocol (LPP) Rel-19
TS 37.571 vj00 UE Conformance for Positioning Rel-19
TS 38.305 vj00 NG-RAN UE Positioning Stage 2 Rel-19
TS 38.455 vj10 NR Positioning Protocol A (NRPPa) Rel-19
TS 44.031 vj00 Radio Resource LCS Protocol (RRLP) 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.