DVB-T

Digital Video Broadcasting - Terrestrial

Physical Layer →
Introduced in Rel-18

DVB-T is the DVB standard for terrestrial digital television broadcasting using OFDM modulation, considered in 3GPP for supplemental downlink and broadcast offload in 5G networks.

Category
Physical Layer
Introduced
Rel-18
Where
Radio Access Network › E-UTRAN (LTE)
Specifications
2 specs
DVB-T Description Purpose Related Classification Specifications

Description

Digital Video Broadcasting - Terrestrial (DVB-T) is a DVB standard specifying the physical layer transmission system for terrestrial digital television. It uses Coded Orthogonal Frequency Division Multiplexing (COFDM) modulation to combat multipath interference and provide robust reception in challenging environments. Within 3GPP, DVB-T is referenced in the context of broadcast service delivery, particularly for MBMS/eMBMS over terrestrial broadcast networks or as a supplemental downlink technology for cellular networks.

The technology works by dividing the digital data stream into thousands of slower sub-streams, each modulated onto a separate subcarrier within the OFDM symbol. This provides resilience against frequency-selective fading and allows for single-frequency networks (SFNs) where multiple transmitters broadcast the same signal on the same frequency, improving coverage and spectral efficiency. Key components include the channel coding (convolutional and Reed-Solomon), interleaving, and the OFDM modulator with configurable parameters like 2k or 8k mode, guard interval, and modulation schemes (QPSK, 16QAM, 64QAM).

In a 3GPP-integrated scenario, DVB-T can be used as a broadcast bearer for delivering multimedia content to 3GPP devices equipped with DVB-T receivers. This enables hybrid broadcast-broadband services where the broadcast network delivers high-bandwidth content (like live TV) and the cellular network provides interactivity and personalization. For 5G, DVB-T is studied for supplemental downlink to boost downlink capacity in dense urban areas or for fixed wireless access, leveraging existing broadcast infrastructure.

Purpose & Motivation

DVB-T was developed to enable the digital switchover from analog terrestrial television (PAL, SECAM) across Europe and other regions. It solved the problem of inefficient spectrum usage and poor picture quality of analog TV, while providing immunity to ghosts and interference. The motivation was to free up spectrum (the digital dividend) for other services like mobile broadband, while offering viewers more channels and features like electronic program guides.

From a 3GPP perspective, the purpose of referencing DVB-T is to explore the use of broadcast spectrum and infrastructure for offloading high-demand downlink traffic, especially for popular live video content. This addresses the limitation of cellular spectrum scarcity during mass events. By potentially using DVB-T as a supplemental downlink in 5G networks, operators can enhance capacity and user experience without deploying additional cellular sites, leveraging the wide coverage of broadcast towers.

Classification

Part ofOFDM

Release Timeline

Evolution Across Releases

Rel-18 Initial

Initial inclusion of DVB-T in 3GPP specifications for 5G broadcast and supplemental downlink studies. Defined potential coexistence scenarios and requirements for using DVB-T spectrum and signals in conjunction with 5G NR.

Further studies on DVB-T2 (the enhanced second generation) integration for higher efficiency broadcast in 5G-Advanced. Exploring dynamic spectrum sharing between 5G and broadcast services using DVB-T/T2.

Explore further

Broader topics and technologies where DVB-T plays a role.

Defining Specifications

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

SpecificationTitleRelease
TS 36.104 vj10 Base Station (BS) radio transmission and reception Rel-19
TR 36.792 vi10 Technical Report Rel-18
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.