The present document provides speech transmission performance requirements for 8 kHz wideband VoIP handset and
headset terminals; it addresses all types of IP based terminals, including wireless and soft phones.
In contrast to other standards which define minimum performance requirements it is the intention of the present
document to specify terminal equipment requirements which enable manufacturers and service providers to enable good
quality end-to-end speech performance as perceived by the user.
In addition to basic testing procedures, the present document describes advanced testing procedures taking into account
further quality parameters as perceived by the user.

Kakovost prenosa govora in večpredstavnih vsebin (STQ) - Prenosne zahteve za širokopasovne terminale VoIP (ročne in naglavne) glede na kakovost storitev (QoS), kot jih dojema uporabnik

V tem dokumentu so podane zahteve glede učinkovitosti prenosa govora za 8-kHz širokopasovne terminale VoIP (ročne in naglavne); obravnava vse vrste terminalov na podlagi naslova IP, vključno z brezžičnimi in programskimi telefoni. V nasprotju z ostalimi standardi, ki opredeljujejo minimalne zahteve glede učinkovitosti, je namen tega dokumenta določiti zahteve za terminalsko opremo, ki proizvajalcem in ponudnikom storitev omogočajo, da zagotavljajo dobro kakovost govora od začetka do konca, kot jo dojema uporabnik.
Poleg osnovnih preskusnih postopkov ta dokument opisuje napredne preskusne postopke, ki upoštevajo še druge parametre kakovosti, kot jih dojema uporabnik.

General Information

Status
Published
Publication Date
19-Jan-2017
Current Stage
6060 - National Implementation/Publication (Adopted Project)
Start Date
09-Jan-2017
Due Date
16-Mar-2017
Completion Date
20-Jan-2017

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SLOVENSKI STANDARD
SIST ES 202 739 V1.5.1:2017
01-marec-2017
.DNRYRVWSUHQRVDJRYRUDLQYHþSUHGVWDYQLKYVHELQ 674 3UHQRVQH]DKWHYH]D
ãLURNRSDVRYQHWHUPLQDOH9R,3 URþQHLQQDJODYQH JOHGHQDNDNRYRVWVWRULWHY
4R6 NRWMLKGRMHPDXSRUDEQLN
Speech and multimedia Transmission Quality (STQ) - Transmission requirements for

wideband VoIP terminals (handset and headset) from a QoS perspective as perceived by

the user
Ta slovenski standard je istoveten z: ETSI ES 202 739 V1.5.1 (2017-01)
ICS:
33.050.01 Telekomunikacijska Telecommunication terminal
terminalska oprema na equipment in general
splošno
SIST ES 202 739 V1.5.1:2017 en

2003-01.Slovenski inštitut za standardizacijo. Razmnoževanje celote ali delov tega standarda ni dovoljeno.

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SIST ES 202 739 V1.5.1:2017
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SIST ES 202 739 V1.5.1:2017
ETSI ES 202 739 V1.5.1 (2017-01)
ETSI STANDARD
Speech and multimedia Transmission Quality (STQ);
Transmission requirements for wideband
VoIP terminals (handset and headset)
from a QoS perspective as perceived by the user
---------------------- Page: 3 ----------------------
SIST ES 202 739 V1.5.1:2017
2 ETSI ES 202 739 V1.5.1 (2017-01)
Reference
RES/STQ-244
Keywords
quality, speech, telephony, terminal, VoIP,
wideband
ETSI
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GSM® and the GSM logo are Trade Marks registered and owned by the GSM Association.

ETSI
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SIST ES 202 739 V1.5.1:2017
3 ETSI ES 202 739 V1.5.1 (2017-01)
Contents

Intellectual Property Rights ................................................................................................................................ 5

Foreword ............................................................................................................................................................. 5

Modal verbs terminology .................................................................................................................................... 5

Introduction ........................................................................................................................................................ 5

1 Scope ........................................................................................................................................................ 6

2 References ................................................................................................................................................ 6

2.1 Normative references ......................................................................................................................................... 6

2.2 Informative references ........................................................................................................................................ 7

3 Definitions and abbreviations ................................................................................................................... 8

3.1 Definitions .......................................................................................................................................................... 8

3.2 Abbreviations ..................................................................................................................................................... 8

4 General considerations ............................................................................................................................. 9

4.1 Coding algorithm ................................................................................................................................................ 9

4.2 End-to-end considerations .................................................................................................................................. 9

5 Test equipment ....................................................................................................................................... 10

5.1 IP half channel measurement adaptor ............................................................................................................... 10

5.2 Environmental conditions for tests ................................................................................................................... 10

5.3 Accuracy of measurements and test signal generation ..................................................................................... 10

5.4 Network impairment simulation ....................................................................................................................... 11

5.5 Acoustic environment ....................................................................................................................................... 12

5.6 Influence of terminal delay on measurements .................................................................................................. 12

6 Requirements and associated measurement methodologies ................................................................... 12

6.1 Notes ................................................................................................................................................................ 12

6.2 Test setup.......................................................................................................................................................... 13

6.2.1 General ........................................................................................................................................................ 13

6.2.2 Setup for handsets and headsets .................................................................................................................. 13

6.2.3 Position and calibration of HATS ............................................................................................................... 14

6.2.4 Test signal levels ......................................................................................................................................... 14

6.2.5 Setup of background noise simulation ........................................................................................................ 14

6.3 Coding independent parameters ....................................................................................................................... 15

6.3.1 Send frequency response ............................................................................................................................ 15

6.3.2 Send Loudness Rating (SLR)...................................................................................................................... 16

6.3.3 Mic mute ..................................................................................................................................................... 16

6.3.4 Linearity range for SLR .............................................................................................................................. 17

6.3.5 Send distortion ............................................................................................................................................ 17

6.3.6 Out-of-band signals in send direction ......................................................................................................... 18

6.3.7 Send noise ................................................................................................................................................... 19

6.3.8 SideTone Masking Rating STMR (mouth to ear) ....................................................................................... 19

6.3.9 Sidetone delay ............................................................................................................................................. 20

6.3.10 Terminal Coupling Loss (TCL) .................................................................................................................. 20

6.3.11 Stability loss................................................................................................................................................ 21

6.3.12 Receive frequency response ........................................................................................................................ 22

6.3.13 Receive Loudness Rating (RLR) ................................................................................................................ 24

6.3.14 Receive distortion ....................................................................................................................................... 25

6.3.15 Out-of-band signals in receive direction ..................................................................................................... 26

6.3.16 Minimum activation level and sensitivity in receive direction ................................................................... 26

6.3.17 Receive noise .............................................................................................................................................. 26

6.3.18 Automatic level control in receive .............................................................................................................. 27

6.3.19 Double talk performance ............................................................................................................................ 27

6.3.19.1 General .................................................................................................................................................. 27

6.3.19.2 Attenuation range in send direction during double talk A .......................................................... 27

H,S,dt

6.3.19.3 Attenuation range in receive direction during double talk A ...................................................... 28

H,R,dt
ETSI
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SIST ES 202 739 V1.5.1:2017
4 ETSI ES 202 739 V1.5.1 (2017-01)

6.3.19.4 Detection of echo components during double talk ................................................................................ 29

6.3.19.5 Minimum activation level and sensitivity of double talk detection ....................................................... 30

6.3.20 Switching characteristics ............................................................................................................................ 30

6.3.20.1 Note ....................................................................................................................................................... 30

6.3.20.2 Activation in send direction .................................................................................................................. 31

6.3.20.3 Silence suppression and comfort noise generation ................................................................................ 31

6.3.21 Background noise performance .................................................................................................................. 31

6.3.21.1 Performance in send in the presence of background noise .................................................................... 31

6.3.21.2 Speech quality in the presence of background noise ............................................................................. 32

6.3.21.3 Quality of background noise transmission (with far end speech).......................................................... 33

6.3.22 Quality of echo cancellation ....................................................................................................................... 34

6.3.22.1 Temporal echo effects ........................................................................................................................... 34

6.3.22.2 Spectral echo attenuation ...................................................................................................................... 34

6.3.22.3 Occurrence of artefacts ......................................................................................................................... 35

6.3.22.4 Variable echo path................................................................................................................................. 35

6.3.23 Variant impairments; network dependant ................................................................................................... 36

6.3.23.1 Clock accuracy send .............................................................................................................................. 36

6.3.23.2 Clock accuracy receive ......................................................................................................................... 36

6.3.23.3 Send delay variation .............................................................................................................................. 36

6.3.24 Send and receive delay - round trip delay ................................................................................................... 37

6.4 Codec specific requirements............................................................................................................................. 39

6.4.1 Objective listening speech quality MOS-LQO in send direction ................................................................ 39

6.4.2 Objective listening quality MOS-LQO in receive direction ....................................................................... 40

6.4.3 Quality of jitter buffer adjustment .............................................................................................................. 41

Annex A (informative): Processing delays in VoIP terminals ............................................................ 43

Annex B (informative): Optimum frequency responses for wideband transmission in receive

direction - underlying subjective experiments ............................................ 46

Annex C (informative): Bibliography ................................................................................................... 48

History .............................................................................................................................................................. 49

ETSI
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SIST ES 202 739 V1.5.1:2017
5 ETSI ES 202 739 V1.5.1 (2017-01)
Intellectual Property Rights

IPRs essential or potentially essential to the present document may have been declared to ETSI. The information

pertaining to these essential IPRs, if any, is publicly available for ETSI members and non-members, and can be found

in ETSI SR 000 314: "Intellectual Property Rights (IPRs); Essential, or potentially Essential, IPRs notified to ETSI in

respect of ETSI standards", which is available from the ETSI Secretariat. Latest updates are available on the ETSI Web

server (https://ipr.etsi.org/).

Pursuant to the ETSI IPR Policy, no investigation, including IPR searches, has been carried out by ETSI. No guarantee

can be given as to the existence of other IPRs not referenced in ETSI SR 000 314 (or the updates on the ETSI Web

server) which are, or may be, or may become, essential to the present document.
Foreword

This ETSI Standard (ES) has been produced by ETSI Technical Committee Speech and multimedia Transmission

Quality (STQ).
Modal verbs terminology

In the present document "shall", "shall not", "should", "should not", "may", "need not", "will", "will not", "can" and

"cannot" are to be interpreted as described in clause 3.2 of the ETSI Drafting Rules (Verbal forms for the expression of

provisions).

"must" and "must not" are NOT allowed in ETSI deliverables except when used in direct citation.

Introduction

Traditionally, the analogue and digital telephones were interfacing switched-circuit 64 kbit/s PCM networks. With the

fast growth of IP networks, wideband terminals providing higher audio-bandwidth and directly interfacing

packet-switched networks (VoIP) are being rapidly introduced. Such IP network edge devices may include gateways,

specifically designed IP phones, soft phones or other devices connected to the IP based networks and providing

telephony service. Since the IP networks will be in many cases interworking with the traditional PSTN and private

networks, many of the basic transmission requirements have to be harmonised with specifications for traditional digital

terminals. However, due to the unique characteristics of the IP networks including packet loss, delay, etc. New

performance specification, as well as appropriate measuring methods, will have to be developed. Terminals are getting

increasingly complex, advanced signal processing is used to address the IP specific issues.

The advanced signal processing of terminals is targeted to speech signals. Therefore, wherever possible speech signals

are used for testing in order to achieve mostly realistic test conditions and meaningful results.

The present document provides speech transmission performance requirements for wideband VoIP handset and headset

terminals.

NOTE: Requirement limits are given in tables, the associated curve when provided is given for illustration.

ETSI
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SIST ES 202 739 V1.5.1:2017
6 ETSI ES 202 739 V1.5.1 (2017-01)
1 Scope

The present document provides speech transmission performance requirements for 8 kHz wideband VoIP handset and

headset terminals; it addresses all types of IP based terminals, including wireless and soft phones.

In contrast to other standards which define minimum performance requirements it is the intention of the present

document to specify terminal equipment requirements which enable manufacturers and service providers to enable good

quality end-to-end speech performance as perceived by the user.

In addition to basic testing procedures, the present document describes advanced testing procedures taking into account

further quality parameters as perceived by the user.
2 References
2.1 Normative references

References are either specific (identified by date of publication and/or edition number or version number) or

non-specific. For specific references, only the cited version applies. For non-specific references, the latest version of the

referenced document (including any amendments) applies.

Referenced documents which are not found to be publicly available in the expected location might be found at

http://docbox.etsi.org/Reference.

NOTE: While any hyperlinks included in this clause were valid at the time of publication, ETSI cannot guarantee

their long term validity.

The following referenced documents are necessary for the application of the present document.

[1] Recommendation ITU-T G.107: "The E-model, a computational model for use in transmission

planning".
[2] Recommendation ITU-T G.108: "Application of the E-model: A planning guide".

[3] Recommendation ITU-T G.109: "Definition of categories of speech transmission quality".

[4] Void.
[5] Recommendation ITU-T G.722: "7 kHz audio-coding within 64 kbit/s".

[6] Recommendation ITU-T G.722.1: "Low-complexity coding at 24 and 32 kbit/s for hands-free

operation in systems with low frame loss".

[7] Recommendation ITU-T G.729.1: "G.729 based Embedded Variable bit-rate coder: An 8-32 kbit/s

scalable wideband coder bitstream interoperable with G.729".
[8] Recommendation ITU-T P.56: "Objective measurement of active speech level".
[9] Recommendation ITU-T P.57: "Artificial ears".
[10] Recommendation ITU-T P.58: "Head and torso simulator for telephonometry".

[11] Recommendation ITU-T P.64: "Determination of sensitivity/frequency characteristics of local

telephone systems".

[12] Recommendation ITU-T P.79: "Calculation of loudness ratings for telephone sets".

[13] Recommendation ITU-T P.340: "Transmission characteristics and speech quality parameters of

hands-free terminals".
[14] Recommendation ITU-T P.380: "Electro-acoustic measurements on headsets".
[15] Recommendation ITU-T P.501: "Test signals for use in telephonometry".
ETSI
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SIST ES 202 739 V1.5.1:2017
7 ETSI ES 202 739 V1.5.1 (2017-01)

[16] Recommendation ITU-T P.502: "Objective test methods for speech communication systems using

complex test signals".

[17] Recommendation ITU-T P.581: "Use of head and torso simulator (HATS) for hands-free terminal

testing".

[18] IEC 61260-1: "Electroacoustics - Octave-band and fractional-octave-band filters -

Part 1: Specifications".

[19] TIA-920.130-A: "Telecommunications Telephone Terminal Equipment Transmission

Requirements for Wideband Digital Wireline Telephones with Headset".

[20] ETSI TS 103 224: "Speech and multimedia Transmission Quality (STQ); A sound field

reproduction method for terminal testing including a background noise database".

[21] Recommendation ITU-T P.863: "Perceptual objective listening quality assessment".

[22] Recommendation ITU-T P.863.1: "Application Guide for Recommendation ITU-T P.863".

[23] ETSI ES 202 737: "Speech and multimedia Transmission Quality (STQ); Transmission

requirements for narrowband VoIP terminals (handset and headset) from a QoS perspective as

perceived by the user".

[24] Recommendation ITU-T P.1010: "Fundamental voice transmission objectives for VoIP terminals

and gateways".

[25] Recommendation ITU-T G.722.2: "Wideband coding of speech at around 16 kbit/s using Adaptive

Multi-Rate Wideband (AMR-WB)".
[26] IETF RFC 3550: "RTP: A Transport Protocol for Real-Time Applications".
2.2 Informative references

References are either specific (identified by date of publication and/or edition number or version number) or

non-specific. For specific references, only the cited version applies. For non-specific references, the latest version of the

referenced document (including any amendments) applies.

NOTE: While any hyperlinks included in this clause were valid at the time of publication, ETSI cannot guarantee

their long term validity.

The following referenced documents are not necessary for the application of the present document but they assist the

user with regard to a particular subject area.

[i.1] ETSI EG 201 377-1: "Speech and multimedia Transmission Quality (STQ); Specification and

measurement of speech transmission quality; Part 1: Introduction to objective comparison

measurement methods for one-way speech quality across networks".

[i.2] ETSI EG 202 425: "Speech Processing, Transmission and Quality Aspects (STQ); Definition and

implementation of VoIP reference point".

[i.3] ETSI EG 202 396-3: "Speech and multimedia Transmission Quality (STQ); Speech Quality

performance in the presence of background noise; Part 3: Background noise transmission -

Objective test methods".
[i.4] Recommendation ITU-T P.800.1: "Mean Opinion Score (MOS) Terminology".
[i.5] NIST Net.
NOTE: Available at https://www-x.antd.nist.gov/itg/nistnet/.
[i.6] Netem.
NOTE: Available at http://www.linuxfoundation.org/en/Net:Netem.
ETSI
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SIST ES 202 739 V1.5.1:2017
8 ETSI ES 202 739 V1.5.1 (2017-01)

[i.7] DAGA 2008: "Testing Wideband Terminals", March 10-13, Dresden, Proceedings. Poschen S.,

Kettler F., Raake A., Spors S.

[i.8] Trace Control for Netem (TCN): "A. Keller, Trace Control for Netem, Semester Thesis

SA-2006-15, ETH Zürich, 2006".

[i.9] ETSI ES 202 739 (V1.2.1): "Speech Processing, Transmission and Quality Aspects (STQ);

Transmission requirements for wideband VoIP terminals (handset and headset) from a QoS

perspective as perceived by the user".
3 Definitions and abbreviations
3.1 Definitions

For the purposes of the present document, the following terms and definitions apply:

artificial ear: device for the calibration of earphones incorporating an acoustic coupler and a calibrated microphone for

the measurement of the sound pressure and having an overall acoustic impedance similar to that of the median adult

human ear over a given frequency band

codec: combination of an analogue-to-digital encoder and a digital-to-analogue decoder operating in opposite directions

of transmission in the same equipment

diffuse field equalization: equalization of the HATS sound pick-up, equalization of the difference, in dB, between the

spectrum level of the acoustic pressure at the ear Drum Reference Point (DRP) and the spectrum level of the acoustic

pressure at the HATS Reference Point (HRP) in a diffuse sound field with the HATS absent using the reverse nominal

curve given in table 3 of Recommendation ITU-T P.58 [10]

ear-Drum Reference Point (DRP): point located at the end of the ear canal, corresponding to the ear-drum position

freefield reference point: point located in the free sound field, at least in 1,5 m distance from a sound source radiating

in free air (in case of a head and torso simulator (HATS) in the centre of the artificial head with no artificial head

present)

Head And Torso Simulator (HATS) for telephonometry: manikin extending downward from the top of the head to

the waist, designed to simulate the sound pick-up characteristics and the acoustic diffraction produced by a median

human adult and to reproduce the acoustic field generated by the human mouth

Mouth Reference Point (MRP): point located on axis and 25 mm in front of the lip plane of a mouth simulator

nominal setting of the volume control: when a receive volume control is provided, the setting which is closest to the

nominal RLR of 2 dB
3.2 Abbreviations
For the purposes of the present document, the following abbreviations apply:
AM-FM Amplitude Modulation-Frequency Modulation
AMR-WB Adaptive Multi Rate - Wideband
CS Composite Source
CSS Composite Source Signal
DRP ear Drum Reference Point
EC Echo Canceller
ELR Echo Loudness Rating
ERP Ears Reference Point
ETH Eidgenössische Technische Hochschule
FFT Fast Fourrier Transform
GSM Global System for Mobile Communications
HATS Head And Torso Simulator
HRP HATS Reference Point
ETSI
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SIST ES 202 739 V1.5.1:2017
9 ETSI ES 202 739 V1.5.1 (2017-01)
IEC International Electrotechnical Commission
IP Internet Protocol
IPDV IP Packet Delay Variation

ITU-T International Telecommunication Union -Telecommunication standardization sector

MOS Mean Opinion Score
MOS-LQOy Mean Opinion Score - Listening Quality Objective

NOTE: y being N for narrow-band, M for mixed and S for superwideband. See Recommendation ITU-T

P.800.1 [i.4].
MRP Mouth Reference Point
N Noise
NIST National Institute of Standards and Technology
NLP Non Linear Processor
PBX Private Branch eXchange
PC Personal Computer
PCM Pulse Code Modulation
PLC Packet Loss Concealment
POI Point Of Interconnect
POLQA Perceptual Objective Listening Quality Assessment
PSTN Public Switched Telephone Network
QoS Quality of Service
RLR Receive Loudness Rating
RMS Root Mean Square
RTP Real Time Protocol
SLR Send Loudness Rating
STMR SideTone Masking Rating
TCL Terminal Coupling Loss
TCN Trace Control for Netem
TDM Time Division Multiplex
TOSQA Telecommunication Objective Speech Quality Assessment
VAD Voice Activity Detection
VoIP Voice over IP
4 General considerations
4.1 Coding algorithm

The assumed coding algorithm is according to Recommendation ITU-T G.722 [5]. VoIP terminals may support other

coding algorithms.

NOTE: Associated Packet Loss Concealment, e.g. as defined in Recommendation ITU-T G.722 [5],

Appendixes 3 and 4 should be used.
4.2 End-to-end considerations

In order to achieve a desired end-to-end speech transmission performance (mouth-to-ear) it is recommended that the

general rules of transmission planning are carried out with the E-model of Recommendation ITU-T G.107 [1] taking

into account that the E-model does not yet address wideband transmission planning; this includes the a

...

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