Description
Reference Sensitivity (REFSENS) is a fundamental performance metric for User Equipment (UE) receivers in cellular networks, defined as the minimum received power level at the antenna connector required to achieve a specified bit error rate (BER) or block error rate (BLER). It is measured under ideal conditions with additive white Gaussian noise (AWGN) and specific reference measurement channels. REFSENS evaluates the receiver's ability to detect and decode weak signals, directly impacting network coverage and link budget calculations. The parameter is specified for various operating bands, modulation schemes, and channel bandwidths across 3GPP technologies including LTE and NR.
The measurement of REFSENS involves applying a test signal at the UE antenna port and gradually reducing the power until the target error rate is reached. This process ensures that the receiver meets minimum sensitivity requirements, which are essential for reliable operation at cell edges or in low-signal environments. Key factors influencing REFSENS include receiver noise figure, implementation losses, and the efficiency of baseband processing algorithms. The parameter is defined for different physical channels, such as PSS/SSS for synchronization and PDSCH for data reception, each with its own sensitivity thresholds.
REFSENS plays a crucial role in network planning and optimization by determining the maximum allowable path loss between the base station and UE. It is used in link budget calculations to estimate cell radius and ensure consistent service quality. By standardizing REFSENS, 3GPP ensures interoperability and performance consistency across devices from different manufacturers. It also drives advancements in receiver design, encouraging improvements in low-noise amplifiers, filters, and digital signal processing to achieve better sensitivity and extend coverage.
Purpose & Motivation
REFSENS was introduced to establish a standardized benchmark for receiver sensitivity, ensuring that all UEs meet minimum performance requirements for reliable network operation. Prior to standardization, variations in receiver design could lead to inconsistent coverage and user experience, particularly in weak signal conditions. 3GPP defined REFSENS to provide a common metric for testing and certification, enabling fair performance comparisons and guaranteeing baseline quality across devices.
The primary problem REFSENS addresses is ensuring that UEs can maintain communication links at the edge of cell coverage, where signal strength is minimal. It solves issues related to dropped calls, poor data rates, and unreliable service in challenging radio environments. Historical context includes the evolution from analog to digital cellular systems, where receiver sensitivity became increasingly critical for supporting higher data rates and complex modulation schemes.
REFSENS also supports network efficiency by enabling accurate link budget calculations, which optimize base station placement and transmit power settings. It motivates continuous improvement in receiver technology, leading to better energy efficiency and longer battery life for UEs. The creation of REFSENS was driven by the need for robust performance in diverse deployment scenarios, including rural areas, indoor environments, and high-interference situations, ensuring that cellular networks deliver consistent service quality worldwide.
Classification
Release Timeline
Detected Changes Across Releases
from 3GPP Change RequestsSpecific changes extracted from the „Change history“ tables of 3GPP specifications (7 CRs across 4 releases). Complements the general historical overview above with the evidence-based evolution of this function.
In Release 15, a new test for Base Station (BS) Reference Sensitivity (REFSENS) was introduced specifically for the subPRB feature. This addition is detailed within the blocking requirements for Local Area and Home BS, where the wanted signal level for testing is defined as REFSENS + 6 dB. The specifications for these tests, including interfering signal power levels and frequency offsets, are provided for TDD operating bands such as 2300-2400 MHz and 2570-2620 MHz.
- CR of test on BS REFSENS for subPRB feature TS 37.141CR0816
In Release 16, the specific update for the REFSENS function involved a correction to the NR (New Radio) reference sensitivity power level specifications. This correction clarified the blocking requirements for Local Area and Home Base Stations in specific TDD operating bands, such as 2300-2400 MHz and 2570-2620 MHz, where the wanted signal level for testing is set at REFSENS + 6 dB. The change ensured the technical parameters for the interfering signal power and minimum offset were accurately defined.
- CR to 37.145-2: Correction on NR REFSENS TS 37.145CR0257
In Release 18, the REFSENS function was updated by adding new operating bands, specifically bands 253 and 254, into the existing test case 7.3A for UE category M1 reference sensitivity power level testing. The release also included corrections to that same test case and modified its test frequency range requirements to align them with those used for regular LTE UEs.
- Addition of band 254 into test case 7.3A Reference sensitivity power level for UE category M1 TS 36.521CR0035
- Correction to TC 7.3A Reference sensitivity power level for UE category M1 TS 36.521CR0056
- Addition of band 253 into test case 7.3A Reference sensitivity power level for UE category M1 TS 36.521CR0052
- Modify reference sensitivity power level related test case test frequency rang requirements to be aligned with regular LTE UE requirements TS 36.521CR0077
In Release 19, a specific correction was made to the Reference Sensitivity (REFSENS) power level values for the NR Non-Terrestrial Network (NTN) band n256. This update ensured the REFSENS parameter, which is used as a baseline in defining blocking requirements and wanted signal levels (e.g., REFSENS + 6 dB), is accurately defined for this new operational context. The change focused on aligning the standard's sensitivity requirements for NTN deployments in this particular band.
- (NR_NTN_solutions-Core) Correction of the NR NTN band n256 REFSENS values TS 38.863CR0032
Explore further
Broader topics and technologies where REFSENS plays a role.
Defining Specifications
3GPP specifications that define or reference REFSENS, with the latest known release. Sourced from the 3GPP document catalog — see methodology.
| Specification | Title | Release |
|---|---|---|
| TS 25.142 vj00 | UTRA TDD Base Station RF Test Methods | Rel-19 |
| TS 36.101 vj30 | LTE UE Radio Transmission & Reception Requirements | Rel-19 |
| TS 36.102 vj10 | E-UTRA UE Satellite Access RF Requirements | Rel-19 |
| TS 36.108 vj10 | Satellite Access Node RF Requirements | Rel-19 |
| TS 36.116 vj00 | E-UTRA Relay RF Requirements | Rel-19 |
| TS 36.117 vj00 | E-UTRA Relay RF Test Methods & Requirements | Rel-19 |
| TS 36.181 vj30 | E-UTRA RF Test Methods for Satellite Access Node | Rel-19 |
| TS 36.521 vj00 | E-UTRA UE Conformance ICS Proforma | Rel-19 |
| TS 36.714 | 3GPP TR 36.714 | Rel-4 |
| TS 36.715 | 3GPP TR 36.715 | Rel-4 |
| TS 36.716 | 3GPP TR 36.716 | Rel-4 |
| TS 36.744 ve00 | CBRS 3.5GHz Band Specification for US | Rel-14 |
| TS 36.755 vf00 | US 600 MHz LTE Band 71 Technical Report | Rel-15 |
| TS 36.761 vf00 | Extended-Band 12 Study Report | Rel-15 |
| TR 36.770 vi00 | Technical Report for High Power UE in LTE Band 14 | Rel-18 |
| TS 36.790 vf00 | LAA/eLAA for CBRS 3.5GHz Band in US | Rel-15 |
| TS 36.833 | 3GPP TR 36.833 | Rel-4 |
| TS 36.852 | 3GPP TR 36.852 | Rel-4 |
| TS 36.858 ve00 | LTE 2.6 GHz SDL Band Technical Report | Rel-14 |
| TS 36.860 | 3GPP TR 36.860 | Rel-4 |
| TS 36.899 | 3GPP TR 36.899 | Rel-4 |
| TS 37.141 vj10 | RF Test Methods for Multi-Standard Radio Base Stations | Rel-19 |
| TS 37.145 vj10 | AAS Base Station Conducted Conformance Testing | Rel-19 |
| TS 37.716 | 3GPP TR 37.716 | Rel-4 |
| TS 37.717 | 3GPP TR 37.717 | Rel-4 |
| TS 37.718 | 3GPP TR 37.718 | Rel-4 |
| TS 37.719 vj00 | 3GPP TR 37.719: Dual Connectivity Band Combinations | Rel-19 |
| TS 37.814 vc00 | L-band Supplemental Downlink for UTRA/E-UTRA | Rel-12 |
| TS 37.825 vg00 | High Power UE (PC2) for EN-DC TDD-TDD | Rel-16 |
| TS 37.862 vj00 | Adding channel bandwidth in existing NR bands | Rel-19 |
| TS 37.863 | 3GPP TR 37.863 | Rel-4 |
| TS 37.872 vf10 | Technical Report on SUL & LTE-NR DC with SUL | Rel-15 |
| TR 37.878 vi00 | Technical Report on Rel-18 NR V2X Band Combinations | Rel-18 |
| TR 37.880 vh20 | High-power UE for fixed-wireless/vehicle use | Rel-17 |
| TS 37.898 vj00 | Rel-19 HPUE for EN-DC Band Combinations | Rel-19 |
| TS 38.101 vj31 | NR User Equipment Radio Transmissions | Rel-19 |
| TS 38.104 vj20 | NR Base Station RF Requirements | Rel-19 |
| TS 38.108 vj20 | NTN NR Satellite Access Node RF Requirements | Rel-19 |
| TS 38.115 vj20 | NR Repeater RF Conformance Testing Part 1 | Rel-19 |
| TS 38.141 vj20 | NR Base Station RF Conformance Testing Part 1 | Rel-19 |
| TS 38.174 vj10 | NR Integrated Access and Backhaul Radio Spec | Rel-19 |
| TS 38.176 vj20 | IAB Conformance Testing Specification | Rel-19 |
| TS 38.181 vj10 | NR Satellite Access Node RF Testing | Rel-19 |
| TS 38.191 vj00 | NR Ambient IoT RF Characteristics | Rel-19 |
| TS 38.194 vj00 | Ambient IoT Base Station RF Spec | Rel-19 |
| TS 38.521 vj20 | NR Physical Layer UE Conformance Testing | Rel-19 |
| TS 38.716 | 3GPP TR 38.716 | Rel-4 |
| TS 38.717 | 3GPP TR 38.717 | Rel-4 |
| TS 38.718 | 3GPP TR 38.718 | Rel-4 |
| TS 38.719 vj00 | Rel-19 NR SUL Configurations and CA Band Combinations | Rel-19 |
| TS 38.741 vj00 | NTN L-/S-band for NR Technical Specification | Rel-19 |
| TS 38.746 vj00 | High Power UE for NR Inter-band CA/DC | Rel-19 |
| TS 38.750 vj00 | High Power UE for NR Inter-band CA/DC | Rel-19 |
| TS 38.755 vj10 | NR FR1 DL Fragmented Carriers Study | Rel-19 |
| TS 38.774 vj00 | Rel-19 LP-WUS/WUR RF Requirements TR | Rel-19 |
| TR 38.785 vh00 | UE radio transmission for enhanced NR sidelink | Rel-17 |
| TR 38.786 vi20 | Technical Report for NR Sidelink Evolution | Rel-18 |
| TS 38.787 vj00 | UE Radio Transmission for Sidelink CA in ITS Band | Rel-19 |
| TS 38.793 vj00 | Simultaneous Rx/Tx Band Combinations TR | Rel-19 |
| TS 38.796 vj00 | Rel-19 High Power UE for NR FR1 | Rel-19 |
| TS 38.809 vg60 | IAB Radio Transmission & Reception Background | Rel-16 |
| TS 38.817 | 3GPP TR 38.817 | Rel-4 |
| TS 38.826 vg00 | NR Vehicle UE 2Rx Exception Study | Rel-16 |
| TR 38.839 vh00 | Simultaneous Rx/Tx band combinations | Rel-17 |
| TR 38.841 vh00 | High power UE for NR inter-band CA | Rel-17 |
| TR 38.842 vh00 | High Power UE for NR CA with Multiple Bands | Rel-17 |
| TR 38.850 vi10 | Technical Report for Rel-18 High Power UE | Rel-18 |
| TR 38.852 vh50 | 1900MHz NR band for European Rail Mobile Radio | Rel-17 |
| TR 38.853 vh50 | 900MHz NR Band for European Rail Mobile Radio | Rel-17 |
| TR 38.860 vh00 | NR; Study on Extended 600 MHz NR band | Rel-17 |
| TS 38.863 vj10 | NR NTN RF and Co-existence Spec | Rel-19 |
| TR 38.868 vh00 | Optimizations of pi/2 BPSK uplink power in NR | Rel-17 |
| TS 38.873 vg00 | NR Band n48 Technical Report | Rel-16 |
| TR 38.881 vi00 | Technical Report on Lower MSD for Inter-band CA/EN-DC/DC | Rel-18 |
| TR 38.886 vg30 | NR V2X UE Radio Transmission & Reception | Rel-16 |
| TR 38.892 vi00 | Technical Report | Rel-18 |
| TR 38.894 vi00 | Technical Report | Rel-18 |
| TR 38.896 vi00 | Technical Report for High Power UE (Power Class 2) for NR FR1 FDD | Rel-18 |
| TR 38.899 vi00 | Technical Report for High Power UE | Rel-18 |