Satellite Earth Stations and Systems (SES); Satellite Component of UMTS/IMT-2000; Part 5: UE Radio Transmission and Reception; Sub-part 1: G-family (S-UMTS-G 25.101)

DTS/SES-00256-5

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Status
Published
Publication Date
30-Jan-2008
Current Stage
12 - Completion
Due Date
11-Feb-2008
Completion Date
31-Jan-2008
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ETSI TS 101 851-5-1 V2.1.1 (2008-01) - Satellite Earth Stations and Systems (SES); Satellite Component of UMTS/IMT-2000; Part 5: UE Radio Transmission and Reception; Sub-part 1: G-family (S-UMTS-G 25.101)
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ETSI TS 101 851-5-1 V2.1.1 (2008-01)
Technical Specification


Satellite Earth Stations and Systems (SES);
Satellite Component of UMTS/IMT-2000;
Part 5: UE Radio Transmission and Reception;
Sub-part 1: G-family (S-UMTS-G 25.101)

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2 ETSI TS 101 851-5-1 V2.1.1 (2008-01)



Reference
DTS/SES-00256-5
Keywords
FDD, IMT-2000, radio, satellite, transmission,
UMTS, WCDMA
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© European Telecommunications Standards Institute 2008.
All rights reserved.

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ETSI

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3 ETSI TS 101 851-5-1 V2.1.1 (2008-01)
Contents
Intellectual Property Rights.6
Foreword.6
Introduction .6
1 Scope.8
2 References.8
2.1 Normative references.8
2.2 Informative references.9
3 Definitions symbols and abbreviations .9
3.1 Definitions.9
3.2 Symbols.10
3.3 Abbreviations.10
4 General.11
4.1 Introduction.11
4.2 Relationship between Minimum Requirements and Test Requirements.11
4.3 Control and monitoring functions .11
4.3.1 Minimum requirement.12
5 Frequency bands and channel arrangement.12
5.1 General.12
5.2 Frequency bands.12
5.3 TX-RX frequency separation.12
5.4 Channel arrangement.12
5.4.1 Channel spacing.12
5.4.2 Channel raster.12
5.4.3 Channel number.12
5.4.4 UARFCN.13
6 Transmitter Characteristics.13
6.1 General.13
6.2 Transmission power.13
6.2.1 UE Maximum output power .13
6.2.2 UE Relative code domain power accuracy .13
6.3 Frequency Error.14
6.4 Output power dynamics.14
6.4.1 Open loop power control .14
6.4.1.1 Minimum requirement.14
6.4.2 Inner loop power control in the uplink.14
6.4.2.1 Power control steps .15
6.4.2.1.1 Minimum requirement.15
6.4.3 Minimum output power .15
6.4.3.1 Minimum requirement.15
6.4.4 Out-of-synchronization handling of output power.16
6.4.4.1 Minimum requirement.16
6.4.4.2 Test case.16
6.5 Transmit ON/OFF power .18
6.5.1 Transmit OFF power.18
6.5.1.1 Minimum requirement.18
6.5.2 Transmit ON/OFF Time mask.18
6.5.2.1 Minimum requirement.18
6.5.3 Change of TFC .20
6.5.3.1 Minimum requirement.20
6.5.4 Power setting in uplink compressed mode.21
6.5.4.1 Minimum requirement.21
6.6 Output RF spectrum emissions.23
ETSI

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4 ETSI TS 101 851-5-1 V2.1.1 (2008-01)
6.6.1 Occupied bandwidth.23
6.6.2 Out of band emission .23
6.6.2.1 Spectrum emission mask.23
6.6.2.1.1 Minimum requirement.24
6.6.2.2 Adjacent Channel Leakage power Ratio (ACLR).24
6.6.2.2.1 Minimum requirement.24
6.6.3 Spurious emissions.25
6.6.3.1 Minimum requirement.25
6.7 Transmit intermodulation.25
6.7.1 Minimum requirement.26
6.8 Transmit modulation .26
6.8.1 Transmit pulse shape filter.26
6.8.2 Error Vector Magnitude.26
6.8.2.1 Minimum requirement.27
6.8.3 Peak code domain error .27
6.8.3.1 Minimum requirement.27
6.8.4 Relative code domain error.27
6.8.4.1 Minimum requirement.28
6.8.5 Phase discontinuity for uplink DPCH.28
6.8.5.1 Minimum requirement.28
7 UE Receiver characteristics.28
7.1 General.28
7.2 Diversity characteristics .29
7.3 Reference sensitivity level.29
7.3.1 Minimum requirement.29
7.4 Maximum input level .29
7.4.1 Minimum requirement for DPCH reception .29
7.5 Adjacent Channel Selectivity (ACS).29
7.5.1 Minimum requirement.30
7.6 Blocking characteristics.30
7.6.1 Minimum requirement (In-band blocking) .30
7.6.2 Minimum requirement (Out of-band blocking) .31
7.6.3 Minimum requirement (Narrow band blocking).31
7.7 Spurious response.31
7.7.1 Minimum requirement.31
7.8 Intermodulation characteristics.32
7.8.1 Minimum requirement.32
7.8.2 Minimum requirement (Narrow band).32
7.9 Spurious emissions.33
7.9.1 Minimum requirement.33
7.10 Maximum Doppler.33
8 Performance requirement .33
8.1 General.33
8.2 Demodulation of DCH in static propagation conditions .34
8.2.1 Minimum requirement.34
8.3 Demodulation of DCH in multi-path fading conditions .34
8.3.1 Reception under ITU defined A, B, C channels and aeronautical .34
8.3.1.1 Minimum performance requirement - LOS.34
8.3.1.2 Minimum performance requirement - NLOS.36
8.3.1.3 Minimum performance requirement - Aeronautical.37
8.3.2 Reception of combined satellite and CGCs signals .37
8.3.3 Reception of CGC only signals.40
8.4 Demodulation of DCH in satellite diversity mode .40
8.4.1 Minimum requirement.40
8.5 Demodulation of DCH in CGC Transmit diversity modes.41
8.6 Demodulation in Handover conditions.41
8.7 Detection of Broadcast Channel (BCH) .41
8.7.1 Minimum requirement.41
8.8 Demodulation of Paging Channel (PCH) .43
8.8.1 Minimum requirement.43
ETSI

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5 ETSI TS 101 851-5-1 V2.1.1 (2008-01)
8.9 Detection of Acquisition Indicator (AI) .44
8.9.1 Minimum requirement.44
9 Performance requirements for Multimedia Broadcast Multicast Service (MBMS).45
9.1 Demodulation of MCCH .45
9.1.1 Minimum requirement.45
9.2 Demodulation of MTCH .46
9.2.3 Minimum requirement.46
Annex A (normative): Measurement channels.48
A.1 General.48
A.2 Uplink reference measurement channel .48
A.2.2 UL reference measurement channel (1,2 kbit/s).48
A.2.3 UL reference measurement channel (4,75 kbit/s).49
A.3 Downlink reference measurement channel .50
A.3.1 DL reference measurement channel (1,2 kbit/s).50
A.3.2 DL reference measurement channel (4,75 kbit/s).51
A.3.3 DL reference measurement channel (64 kbit/s).52
A.3.4 DL reference measurement channel (144 kbit/s).53
A.3.5 DL reference measurement channel (384 kbit/s).54
A.4 DL reference parameters for PCH tests.55
A.5 DL reference parameters for MBMS tests.56
A.5.1 MCCH.56
A.5.2 MTCH.56
Annex B (normative): Propagation conditions.58
B.1 Static propagation condition.58
B.2 Multi-path fading propagation condition.58
B.2.1 Satellite channels.58
B.2.2 Combined Satellite and CGC channels .59
Annex C (normative): Downlink Physical Channels.60
C.1 General.60
C.2 Connection set-up.60
C.3 During connection.60
C.3.1 Measurement of Rx Characteristics.60
C.3.2 Measurement of performance requirements .61
C.4 W-CDMA Modulated Interferer .62
Annex D (normative): UE Environmental conditions.63
D.1 General.63
D.2 Environmental requirements .63
D.2.1 Temperature.63
D.2.2 Voltage.63
D.2.3 Vibration.64
Annex E (informative): Change History .65
History .66

ETSI

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6 ETSI TS 101 851-5-1 V2.1.1 (2008-01)
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 (http://webapp.etsi.org/IPR/home.asp).
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 Technical Specification (TS) has been produced by ETSI Technical Committee Satellite Earth Stations and
Systems (SES).
The present document is specifying the Satellite Radio Interface referenced as SRI Family G at ITU-R, in the frame of
the modification of ITU-R Recommendation M.1457-5 [10]. This modification has been approved at ITU-R SG8
meeting in November 2005.
The present document is part 5, sub-part 1 of a multi-part deliverable covering Satellite Earth Stations and Systems
(SES); Satellite Component of UMTS/IMT-2000; G-family, as identified below:
Part 1: "Physical channels and mapping of transport channels into physical channels";
Part 2: "Multiplexing and channel coding";
Part 3: "Spreading and modulation";
Part 4: "Physical layer procedures";
Part 5: "UE Radio Transmission and Reception";
Sub-part 1: "G-family (S-UMTS-G 25.101)";
Part 6: "Ground stations and space segment radio transmission and reception".
Introduction
S-UMTS stands for the Satellite component of the Universal Mobile Telecommunication System. S-UMTS systems will
complement the terrestrial UMTS (T-UMTS) and inter-work with other IMT-2000 family members through the UMTS
rd
core network. S-UMTS will be used to deliver 3 generation mobile satellite services (MSS) utilizing either low (LEO)
or medium (MEO) earth orbiting, or geostationary (GEO) satellite(s). S-UMTS systems are based on terrestrial 3GPP
specifications and will support access to GSM/UMTS core networks.
NOTE 1: The term T-UMTS will be used in the present document to further differentiate the Terrestrial UMTS
component.
Due to the differences between terrestrial and satellite channel characteristics, some modifications to the terrestrial
UMTS (T-UMTS) standards are necessary. Some specifications are directly applicable, whereas others are applicable
with modifications. Similarly, some T-UMTS specifications do not apply, whilst some S-UMTS specifications have no
corresponding T-UMTS specification.
ETSI

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7 ETSI TS 101 851-5-1 V2.1.1 (2008-01)
Since S-UMTS is derived from T-UMTS, the organization of the S-UMTS specifications closely follows the original
rd
3 Generation Partnership Project (3GPP) structure. The S-UMTS numbers have been designed to correspond to the
3GPP terrestrial UMTS numbering system. All S-UMTS specifications are allocated a unique S-UMTS number as
follows:
S-UMTS-n xx.yyy
Where:
• The numbers xx and yyy correspond to the 3GPP-numbering scheme.
• n (n=A, B, C, …) denotes the family of S-UMTS specifications.
An S-UMTS system is defined by the combination of a family of S-UMTS specifications and 3GPP specifications, as
follows:
• If an S-UMTS specification exists it takes precedence over the corresponding 3GPP
...

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