SD

Secondary stream ETFC Offset

Physical Layer →
Introduced in Rel-8 Also in: Radio Access Network, Management, Core Network, User Equipment

SD is a 5G NR uplink parameter for CP-OFDM that defines a power offset applied to a secondary stream relative to a primary stream for multi-layer MIMO power control.

Category
Physical Layer
Introduced
Rel-8
Where
Services › Codecs
Also touches
4 segments
Specifications
15 specs
SD Description Purpose Related Classification Specifications

Description

The Secondary stream ETFC Offset (SD) is a technical parameter within the 5G New Radio (NR) physical layer specifications for uplink power control. It is applicable when the UE is configured for uplink transmission using the CP-OFDM waveform without transform precoding (i.e., not using DFT-s-OFDM) and is operating in a multi-layer (MIMO) scenario. ETFC stands for 'Effective Target received power per FFT bin per Channel'. The SD parameter, signaled by the network via RRC or MAC CE, provides an offset value in decibels (dB). This offset is used in the uplink power control formula to calculate the transmit power for a secondary data stream relative to a primary stream. The primary stream's power is determined based on open-loop and closed-loop power control mechanisms involving pathloss estimates and TPC commands. For the secondary stream, its power is derived by applying the SD offset to the primary stream's calculated power. This approach allows the gNB to finely control the relative power levels between multiple spatial layers, which is crucial for optimizing uplink MIMO performance, managing inter-layer interference, and ensuring reliable demodulation at the receiver. The parameter is part of a suite of power control adjustments that enable efficient spectral utilization and link adaptation in advanced 5G NR deployments.

Purpose & Motivation

The SD parameter was introduced to address the specific needs of uplink Multi-User MIMO (MU-MIMO) and single-user MIMO (SU-MIMO) in 5G NR, particularly when using the high-spectral-efficiency CP-OFDM waveform. In LTE, uplink MIMO was more limited and often used DFT-s-OFDM (SC-FDMA), which has different power characteristics. With 5G's support for CP-OFDM in the uplink and more advanced multi-antenna techniques, a more granular power control mechanism was required. Different spatial streams may experience different effective channels or interference conditions. Applying the same transmit power to all streams is suboptimal. The SD offset allows the gNB to independently balance the power between the primary and secondary streams, optimizing the signal-to-interference-plus-noise ratio (SINR) for each layer. This solves problems like one stream overpowering another or insufficient power for a secondary stream in a rank-2 transmission, ultimately improving uplink throughput, cell-edge performance, and overall MIMO efficiency in diverse radio conditions.

Classification

Part ofPUSCH
Related approachesCP-OFDM

Evolution Across Releases

Rel-15 Initial

The concept and parameter for Secondary stream ETFC Offset (SD) were introduced as part of the foundational 5G NR specifications in Release 15. It was defined within the uplink power control framework to support the new CP-OFDM-based uplink MIMO capabilities, establishing the formulas and signaling mechanisms for its use.

Explore further

Broader topics and technologies where SD plays a role.

Defining Specifications

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

SpecificationTitleRelease
TR 22.816 ve10 3GPP TV Service Enhancement Technical Report Rel-14
TS 23.501 vk00 5G System Architecture Stage 2 Rel-20
TS 25.700 vc00 Further Enhanced Uplink (EUL) Study Rel-12
TR 26.949 vj00 TV Service Profiles for 3GPP Networks Rel-19
TR 26.975 vj00 AMR Speech Codec Performance Background Rel-19
TR 26.978 vj00 AMR Noise Suppression Selection Phase Technical Report Rel-19
TS 28.535 vj00 Closed Control Loop Assurance Management Rel-19
TS 29.561 vj30 5G Interworking with External Data Networks Rel-19
TS 31.105 vj10 Slice Subscriber Identity Module (SSIM) Application Rel-19
TS 31.111 vj30 USIM Application Toolkit (USAT) Specification Rel-19
TS 32.101 vj00 Management principles and high-level requirements Rel-19
TS 32.818 v800 SA5 MTOSI XML Harmonization Study Rel-8
TS 38.300 vj00 NG-RAN Overall Description Rel-19
TR 38.859 vi10 Technical Report Rel-18
TS 46.055 vj00 GSM Enhanced Full Rate Speech Codec Performance 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.