3GPP TS25104Technical Specification.doc

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1、3GPP TS 25.104 V8.8.0 (2009-09)Technical Specification3rd Generation Partnership Project;Technical Specification Group Radio Access Network;Base Station (BS) radio transmission and reception (FDD)(Release 8)The present document has been developed within the 3rd Generation Partnership Project (3GPP T

2、M) and may be further elaborated for the purposes of 3GPP. The present document has not been subject to any approval process by the 3GPP Organisational Partners and shall not be implemented. This Specification is provided for future development work within 3GPP only. The Organisational Partners acce

3、pt no liability for any use of this Specification.Specifications and reports for implementation of the 3GPP TM system should be obtained via the 3GPP Organisational Partners Publications Offices.KeywordsUMTS, radio3GPPPostal address3GPP support office address650 Route des Lucioles - Sophia Antipolis

4、Valbonne - FRANCETel.: +33 4 92 94 42 00 Fax: +33 4 93 65 47 16Internethttp:/www.3gpp.orgCopyright NotificationNo part may be reproduced except as authorized by written permission.The copyright and the foregoing restriction extend to reproduction in all media. 2009, 3GPP Organizational Partners (ARI

5、B, ATIS, CCSA, ETSI, TTA, TTC).All rights reserved.UMTS is a Trade Mark of ETSI registered for the benefit of its members3GPP is a Trade Mark of ETSI registered for the benefit of its Members and of the 3GPP Organizational PartnersLTE is a Trade Mark of ETSI currently being registered for the benefi

6、t of its Members and of the 3GPP Organizational PartnersGSM and the GSM logo are registered and owned by the GSM AssociationContentsForeword71Scope82References83Definitions and abbreviations83.1Definitions83.2Abbreviations94General104.1Relationship between Minimum Requirements and Test Requirements1

7、04.2Base station classes104.3Regional requirements114.4Environmental requirements for the BS equipment125Frequency bands and channel arrangement125.1General125.2Frequency bands135.3Tx-Rx frequency separation135.4Channel arrangement145.4.1Channel spacing145.4.2Channel raster145.4.3Channel number146Tr

8、ansmitter characteristics156.1General156.2Base station output power166.2.1Base station maximum output power166.2.1.1Minimum requirement166.3Frequency error176.3.1Minimum requirement176.4Output power dynamics176.4.1Inner loop power control in the downlink176.4.1.1Power control steps176.4.1.1.1Minimum

9、 requirement176.4.2Power control dynamic range186.4.2.1Minimum requirements186.4.3Total power dynamic range186.4.3.1Minimum requirement186.4.4Primary CPICH power186.4.4.1Minimum requirement186.4.5IPDL time mask186.4.5.1Minimum Requirement186.4.6Home base station output power for adjacent channel pro

10、tection196.4.6.1Minimum requirement206.5(void)206.6Output RF spectrum emissions206.6.1Occupied bandwidth206.6.1.1Minimum requirement206.6.2Out of band emission206.6.2.1Spectrum emission mask206.6.2.2Adjacent Channel Leakage power Ratio (ACLR)236.6.2.2.1Minimum requirement246.6.3Spurious emissions246

11、.6.3.1Mandatory Requirements246.6.3.1.1Spurious emissions (Category A)246.6.3.1.1.1Minimum Requirement246.6.3.1.2Spurious emissions (Category B)256.6.3.1.2.1Minimum Requirement256.6.3.2Protection of the BS receiver of own or different BS266.6.3.2.1Minimum Requirement266.6.3.3Co-existence with other

12、systems in the same geographical area276.6.3.3.1Minimum Requirements286.6.3.4Co-existence with co-located and co-sited base stations296.6.3.4.1Minimum Requirements306.6.3.5Co-existence with PHS316.6.3.5.1Minimum Requirement316.6.3.6Co-existence with services in adjacent frequency bands316.6.3.6.1Min

13、imum requirement326.6.3.7Co-existence with UTRA-TDD326.6.3.7.1Operation in the same geographic area326.6.3.7.1.1Minimum Requirement326.6.3.7.2Co-located base stations326.6.3.7.2.1Minimum Requirement336.6.3.8.1Minimum Requirement336.7Transmit intermodulation356.7.1Minimum requirement356.8Transmit mod

14、ulation356.8.1Transmit pulse shape filter356.8.2Error Vector Magnitude356.8.2.1Minimum requirement366.8.3Peak code Domain error366.8.3.1Minimum requirement366.8.4Time alignment error in Tx Diversity, MIMO transmission and DC-HSDPA366.8.4.1Minimum Requirement366.8.5 Relative Code Domain Error for 64Q

15、AM modulation366.8.5.1Minimum requirement367Receiver characteristics367.1General367.2Reference sensitivity level377.2.1Minimum requirement377.2.2Maximum Frequency Deviation for Receiver Performance377.3Dynamic range377.3.1Minimum requirement387.4Adjacent Channel Selectivity (ACS)387.4.1Minimum requi

16、rement387.4.2Minimum requirement - Co-location with UTRA-TDD387.5Blocking characteristics397.5.1Minimum requirement407.5.2Minimum Requirement - Co-location with GSM900, DCS 1800, PCS1900, GSM850 and/or UTRA FDD467.5.3Minimum Requirement - Co-location with UTRA-TDD477.6Intermodulation characteristics

17、487.6.1Minimum requirement487.7Spurious emissions497.7.1Minimum requirement508Performance requirement518.1General518.2Demodulation in static propagation conditions528.2.1Demodulation of DCH528.2.1.1Minimum requirement528.3Demodulation of DCH in multipath fading conditions528.3.1Multipath fading Case

18、 1528.3.1.1Minimum requirement528.3.2Multipath fading Case 2538.3.2.1Minimum requirement538.3.3Multipath fading Case 3538.3.3.1Minimum requirement548.3.4Multipath fading Case 4548.3.4.1Minimum requirement548.4Demodulation of DCH in moving propagation conditions548.4.1Minimum requirement558.5Demodula

19、tion of DCH in birth/death propagation conditions558.5.1Minimum requirement558.5ADemodulation of DCH in high speed train conditions558.5A.1General558.5A.2Minimum requirement568.6(void)568.7Performance requirement for RACH568.7.1Performance requirement for RACH preamble detection568.7.2Demodulation o

20、f RACH message578.7.2.1Minimum requirements for Static Propagation Condition578.7.2.2Minimum requirements for Multipath Fading Case 3578.7.2.3Minimum requirements for high speed train conditions588.8(void)598.9(void)598.10Performance of ACK/NACK detection for HS-DPCCH598.10.1ACK false alarm598.10.2A

21、CK mis-detection608.11Demodulation of E-DPDCH in multipath fading condition608.12Performance of signaling detection for E-DPCCH in multipath fading condition61Annex A (normative):Measurement channels63A.1Summary of UL reference measurement channels63A.2UL reference measurement channel for 12.2 kbps6

22、4A.3UL reference measurement channel for 64 kbps65A.4UL reference measurement channel for 144 kbps66A.5UL reference measurement channel for 384 kbps67A.6(void)67A.7Reference measurement channels for UL RACH68A.8Reference measurement channel for HS-DPCCH68A.9Summary of E-DPDCH Fixed reference channel

23、s69A.10E-DPDCH Fixed reference channel 1 (FRC1)69A.11E-DPDCH Fixed reference channel 2 (FRC2)70A.12E-DPDCH Fixed reference channel 3 (FRC3)71A.13E-DPDCH Fixed reference channel 4 (FRC4)72A.14E-DPDCH Fixed reference channel 5 (FRC5)73A.15E-DPDCH Fixed reference channel 6 (FRC6)74A.16E-DPDCH Fixed ref

24、erence channel 7 (FRC7)74A.17E-DPDCH Fixed reference channel 8 (FRC8)75Annex B (normative):Propagation conditions77B.1Static propagation condition77B.2Multi-path fading propagation conditions77B.3Moving propagation conditions77B.4Birth-Death propagation conditions78B.4AHigh speed train conditions79B

25、.5Multipath fading propagation conditions81Annex C (normative):Characteristics of the W-CDMA interference signal82Annex D (informative):Change History83 ForewordThis Technical Specification has been produced by the 3GPP.The contents of the present document are subject to continuing work within the T

26、SG and may change following formal TSG approval. Should the TSG modify the contents of this TS, it will be re-released by the TSG with an identifying change of release date and an increase in version number as follows:Version 3.y.zwhere:xthe first digit:1presented to TSG for information;2presented t

27、o TSG for approval;3Indicates TSG approved document under change control.ythe second digit is incremented for all changes of substance, i.e. technical enhancements, corrections, updates, etc.zthe third digit is incremented when editorial only changes have been incorporated in the specification.1Scop

28、eThis document establishes the Base Station minimum RF characteristics of the FDD mode of UTRA. 2ReferencesThe following documents contain provisions which, through reference in this text, constitute provisions of the present document. References are either specific (identified by date of publicatio

29、n, edition number, version number, etc.) or nonspecific. For a specific reference, subsequent revisions do not apply. For a non-specific reference, the latest version applies. In the case of a reference to a 3GPP document (including a GSM document), a non-specific reference implicitly refers to the

30、latest version of that document in the same Release as the present document.1ITU-R Recommendation SM.329, Unwanted emissions in the spurious domain .2(void)3ETSI ETR 273-1-2: Electromagnetic compatibility and Radio spectrum Matters (ERM); Improvement of radiated methods of measurement (using test si

31、tes) and evaluation of the corresponding measurement uncertainties; Part 1: Uncertainties in the measurement of mobile radio equipment characteristics; Sub-part 2: Examples and annexes.43GPP TR 25.942 RF System Scenarios.53GPP TS 45.004: Digital cellular telecommunications system (Phase 2+); Modulat

32、ion.63GPP TS 25.213: Spreading and modulation (FDD).7ITU-R recommendation SM.328: Spectra and bandwidth of emissions.3Definitions and abbreviations3.1DefinitionsFor the purposes of the present document, the following definitions apply:Output power: The mean power of one carrier of the base station,

33、delivered to a load with resistance equal to the nominal load impedance of the transmitter.Rated output power: Rated output power of the base station is the mean power level per carrier that the manufacturer has declared to be available at the antenna connector.Maximum output Power: The mean power l

34、evel per carrier of the base station measured at the antenna connector in a specified reference condition.Mean power: When applied to a W-CDMA modulated signal this is the power (transmitted or received) in a bandwidth of at least (1+ a) times the chip rate of the radio access mode. The period of me

35、asurement shall be at least one timeslot unless otherwise stated.Power control dynamic range: The difference between the maximum and the minimum transmit output power of a code channel for a specified reference condition.RRC filtered mean power: The mean power as measured through a root raised cosin

36、e filter with roll-off factor a and a bandwidth equal to the chip rate of the radio access mode.NOTE 1:The RRC filtered mean power of a perfectly modulated W-CDMA signal is 0.246 dB lower than the mean power of the same signal.Code domain power: That part of the mean power which correlates with a pa

37、rticular (OVSF) code channel. The sum of all powers in the code domain equals the mean power in a bandwidth of (1+ a) times the chip rate of the radio access mode.Total power dynamic range: The difference between the maximum and the minimum total transmit output power for a specified reference condi

38、tion.NOTE 2:The roll-off factor a is defined in section 6.8.1.3.2AbbreviationsFor the purposes of the present document, the following abbreviations apply:16QAM16 Quadrature Amplitude ModulationACIRAdjacent Channel Interference RatioACLRAdjacent Channel Leakage power RatioACSAdjacent Channel Selectiv

39、ityBSBase StationBERBit Error RatioBLERBlock Error RatioCWContinuous Wave (unmodulated signal)DC-HSDPADual Cell HSDPADLDown Link (forward link)FDDFrequency Division DuplexingGSMGlobal System for Mobile CommunicationsHSDPAHigh Speed Downlink Packet AccessMIMOMultiple Input Multiple OutputPoutOutput P

40、owerPRATRated Output PowerPHSPersonal Handyphone SystemPPMParts Per MillionQPSKQuadrature Phase Shift KeyingRSSIReceived Signal Strength IndicatorSIRSignal to Interference ratioTDDTime Division DuplexingTPCTransmit Power ControlUARFCNUTRA Absolute Radio Frequency Channel NumberUEUser EquipmentULUp L

41、ink (reverse link)WCDMAWideband Code Division Multiple Access4General4.1Relationship between Minimum Requirements and Test RequirementsThe Minimum Requirements given in this specification make no allowance for measurement uncertainty. The test specification 25.141 section 4 defines Test Tolerances.

42、These Test Tolerances are individually calculated for each test. The Test Tolerances are used to relax the Minimum Requirements in this specification to create Test Requirements.The measurement results returned by the Test System are compared - without any modification - against the Test Requirement

43、s as defined by the shared risk principle.The Shared Risk principle is defined in ETR 273 Part 1 sub-part 2 section 6.5.4.2Base station classesThe requirements in this specification apply to Wide Area Base Stations, Medium Range Base Stations, Local Area Base Stations and Home Base Stations unless o

44、therwise stated. Wide Area Base Stations are characterised by requirements derived from Macro Cell scenarios with a BS to UE minimum coupling loss equals to 70 dB. The Wide Area Base Station class has the same requirements as the base station for General Purpose application in Release 99, 4 and 5.Me

45、dium Range Base Stations are characterised by requirements derived from Micro Cell scenarios with a BS to UE minimum coupling loss equals to 53 dB.Local Area Base Stations are characterised by requirements derived from Pico Cell scenarios with a BS to UE minimum coupling loss equals to 45 dB.Home Ba

46、se Stations are characterised by requirements derived from Femto Cell scenarios.4.3Regional requirementsSome requirements in TS 25.104 may only apply in certain regions. Table 4.1 lists all requirements that may be applied differently in different regions.Table 4.1: List of regional requirementsClause numberRequirementComments5.2Frequency bandsSome bands may be applied regionally.5.3Tx-Rx Frequency SeparationThe requirement is applied according to what frequency bands in Clause 5.2 that are support

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