ETSI TR 125 951-2016 Universal Mobile Telecommunications System (UMTS) FDD Base Station (BS) classification (V13 0 0 3GPP TR 25 951 version 13 0 0 Release 13)《通用移动通信系统(UMTS) 频分双工基站.pdf

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1、 ETSI TR 1Universal Mobile TelFDD Base S(3GPP TR 25.9TECHNICAL REPORT 125 951 V13.0.0 (2016elecommunications System (e Station (BS) classification .951 version 13.0.0 Release 1316-01) (UMTS); 13) ETSI ETSI TR 125 951 V13.0.0 (2016-01)13GPP TR 25.951 version 13.0.0 Release 13Reference RTR/TSGR-042595

2、1vd00 Keywords UMTS ETSI 650 Route des Lucioles F-06921 Sophia Antipolis Cedex - FRANCE Tel.: +33 4 92 94 42 00 Fax: +33 4 93 65 47 16 Siret N 348 623 562 00017 - NAF 742 C Association but non lucratif enregistre la Sous-Prfecture de Grasse (06) N 7803/88 Important notice The present document can be

3、 downloaded from: http:/www.etsi.org/standards-search The present document may be made available in electronic versions and/or in print. The content of any electronic and/or print versions of the present document shall not be modified without the prior written authorization of ETSI. In case of any e

4、xisting or perceived difference in contents between such versions and/or in print, the only prevailing document is the print of the Portable Document Format (PDF) version kept on a specific network drive within ETSI Secretariat. Users of the present document should be aware that the document may be

5、subject to revision or change of status. Information on the current status of this and other ETSI documents is available at http:/portal.etsi.org/tb/status/status.asp If you find errors in the present document, please send your comment to one of the following services: https:/portal.etsi.org/People/

6、CommiteeSupportStaff.aspx Copyright Notification No part may be reproduced or utilized in any form or by any means, electronic or mechanical, including photocopying and microfilm except as authorized by written permission of ETSI. The content of the PDF version shall not be modified without the writ

7、ten authorization of ETSI. The copyright and the foregoing restriction extend to reproduction in all media. European Telecommunications Standards Institute 2016. All rights reserved. DECTTM, PLUGTESTSTM, UMTSTMand the ETSI logo are Trade Marks of ETSI registered for the benefit of its Members. 3GPPT

8、M and LTE are Trade Marks of ETSI registered for the benefit of its Members and of the 3GPP Organizational Partners. GSM and the GSM logo are Trade Marks registered and owned by the GSM Association. ETSI ETSI TR 125 951 V13.0.0 (2016-01)23GPP TR 25.951 version 13.0.0 Release 13Intellectual Property

9、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); Essent

10、ial, 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 ou

11、t 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 Report (TR) has been produced by ETSI 3rd Generation Partne

12、rship Project (3GPP). The present document may refer to technical specifications or reports using their 3GPP identities, UMTS identities or GSM identities. These should be interpreted as being references to the corresponding ETSI deliverables. The cross reference between GSM, UMTS, 3GPP and ETSI ide

13、ntities can be found under http:/webapp.etsi.org/key/queryform.asp. 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 (Ver

14、bal forms for the expression of provisions). “must“ and “must not“ are NOT allowed in ETSI deliverables except when used in direct citation. ETSI ETSI TR 125 951 V13.0.0 (2016-01)33GPP TR 25.951 version 13.0.0 Release 13Contents Intellectual Property Rights 2g3Foreword . 2g3Modal verbs terminology 2

15、g3Foreword . 6g31 Scope 7g32 References 7g33 Definitions, symbols and abbreviations . 7g34 General . 7g35 System scenarios 7g35.1 Indoor Environment . 7g35.1.1 Path Loss Model . 7g35.2 Mixed Indoor Outdoor Environment . 8g35.2.1 Propagation Model 8g35.3 Minimum coupling loss (MCL) 9g35.3.1 MCL for L

16、ocal Area scenario . 9g35.4 FDD Base Station Classification for Medium range BS class 10g35.4.1 Proposal for Medium range (micro) BS class output power . 10g35.4.1.1 Discussion . 10g35.4.1.2 Proposal . 10g35.5 FDD Base Station Classification for Local area BS class 10g35.5.1 Proposal for Local area

17、(pico) BS class output power 10g35.5.1.1 Discussion . 10g35.5.1.2 Proposal . 11g36 Base station classes 11g36.1 Base station class criteria . 11g36.1.1 Text proposal for 4.2 Base station classes 11g37 Changes for the Release 6 in addition to Release 5 12g37.1 Changes in 25.104 12g37.1.1 Frequency er

18、ror . 12g37.1.1.1 New requirement . 12g37.1.1.2 Text proposal for 6.3.1 Minimum requirement . 12g37.1.1.3 Adjacent Channel Leakage power Ratio (ACLR) 13g37.1.3 Reference sensitivity level 14g37.1.4 Spectrum emission mask 14g37.1.5 Adjacent Channel Selectivity (ACS) 14g37.1.6 Blocking characteristics

19、 14g37.1.7 Intermodulation characteristics . 16g37.1.8 Demodulation in static propagation conditions. 18g37.1.9 Demodulation of DCH in multipath fading conditions . 18g37.1.10 Demodulation of DCH in moving propagation conditions . 18g37.1.11 Demodulation of DCH in birth/death propagation conditions

20、18g37.1.12 Output power dynamics 18g37.1.13 Spurious emissions . 19g37.1.14 Transmit intermodulation . 21g37.1.15 Transmit modulation . 21g37.1.16 Receiver dynamic range 21g37.1.17 Receiver spurious emissions . 22g37.1.18 Base station maximum output power 22g37.2 Changes in 25.133 22g37.2.1 Received

21、 total wideband power 22g37.3 Changes in 25.141 23g3ETSI ETSI TR 125 951 V13.0.0 (2016-01)43GPP TR 25.951 version 13.0.0 Release 138 Impacts to other WGs . 24g39 Backward Compatibility. 24g3Annex A (informative): Simulation results 25g3A.1 Micro base stations in FDD mode 25g3A.1.1 Receiver sensitivi

22、ty 25g3A.1.1.1 Macro to micro multi-operator case 25g3A.1.1.2 Simulation results . 26g3A.1.1.3 Simulation parameters 27g3A.1.1.4 Macro-Micro on adjacent frequencies 28g3A.1.1.4.1 Speech 8 kbps 28g3A.1.1.4.2 Data 144 kbps 28g3A.1.1.5 Micro-Micro scenario on adjacent frequencies . 29g3A.1.2 Blocking,

23、ACS, and Intermodulation . 29g3A.1.2.1 Macro to micro multi-operator case 29g3A.1.2.2 Simulation results . 31g3A.1.2.2.1 Blocking performance . 33g3A.1.2.2.2 Adjacent Channel Selectivity 33g3A.1.2.2.3 Intermodulation Characteristics 33g3A.1.2.3 Simulation parameters 34g3A.2 Pico base stations in FDD

24、 mode . 34g3A.2.1 Mixed microcell-picocell scenario . 34g3A.2.2 Receiver sensitivity 35g3A.2.2.1 Simulation parameters 35g3A.2.2.2 Simulation results . 37g3A.2.2.3 Noise rise for UL in Picocell environment . 38g3A.2.2.4 UL noise rise calculation for the picocell BS 38g3A.2.2.5 Reference sensitivity

25、level 40g3A.2.3 Dynamic range, ACS, Blocking and Intermodulation 41g3A.2.3.1 Simulation parameters 41g3A.2.3.2 Dynamic range 41g3A.2.3.3 ACS 42g3A.2.3.4 Blocking characteristics 42g3A.2.3.5 Intermodulation characteristics . 46g3A.3 Maximum output power for Medium range BS class 47g3A.3.1 Simulation

26、results #1 47g3A.3.1.1 Simulation scenario. 47g3A.3.1.2 Simulation results . 47g3A.3.1.3 Proposal 48g3A.3.2 Simulation results #2 49g3A.3.2.1 Simulation scenario. 49g3A.3.2.2 Simulation results . 49g3A.3.2.3 Proposal 50g3A.4 Maximum output power for Local area BS class . 51g3A.4.1 Simulation results

27、 #1 51g3A.4.1.1 Simulation scenario. 51g3A.4.1.2 Simulation results . 51g3A.4.1.3 Proposal . 53g3A.4.2 Simulation results #2 53g3A.4.2.1 Simulation scenario. 53g3A.4.2.2 Simulation results . 54g3A.4.2.3 Proposal 55g3Annex B (informative): Radio Network Planning Considerations 56g3B.1 Adjacent freque

28、ncy Interference 56g3B.1.1 General . 56g3B.1.2 Example analysis for localized interference . 56g3B.1.3 Deployment guidelines to reduce interference . 57g3ETSI ETSI TR 125 951 V13.0.0 (2016-01)53GPP TR 25.951 version 13.0.0 Release 13B.2 Intra-frequency interference . 58g3B.2.1 General . 58g3B.2.2 Ex

29、ample analysis for localized interference . 58g3B.2.2.1 UL issue 58g3B.2.2.2 DL issue 59g3B.2.3 Deployment guidelines to reduce interference . 60g3Annex C (informative): Change History 61g3History 62g3ETSI ETSI TR 125 951 V13.0.0 (2016-01)63GPP TR 25.951 version 13.0.0 Release 13Foreword This Techni

30、cal Specification has been produced by the 3rdGeneration Partnership Project (3GPP). The contents of the present document are subject to continuing work within the TSG and may change following formal TSG approval. Should the TSG modify the contents of the present document, it will be re-released by

31、the TSG with an identifying change of release date and an increase in version number as follows: Version x.y.z where: x the first digit: 1 presented to TSG for information; 2 presented to TSG for approval; 3 or greater indicates TSG approved document under change control. Y the second digit is incre

32、mented for all changes of substance, i.e. technical enhancements, corrections, updates, etc. z the third digit is incremented when editorial only changes have been incorporated in the document. ETSI ETSI TR 125 951 V13.0.0 (2016-01)73GPP TR 25.951 version 13.0.0 Release 131 Scope This document is a

33、Technical Report on Release 6 work item FDD Base Station Classification. 2 References The following documents contain provisions which, through reference in this text, constitute provisions of the present document. References are either specific (identified by date of publication, edition number, ve

34、rsion number, etc.) or non-specific. For a specific reference, subsequent revisions do not apply. For a non-specific reference, the latest version applies. 1 3GPP TS 25.104 BS Radio transmission and Reception (FDD) 2 3GPP TS 25.133 Requirements for Support of Radio Resource Management (FDD) 3 3GPP T

35、S 25.141 Base Station (BS) conformance testing (FDD) 4 3GPP TR 25.942 RF System Scenarios 5 UMTS 30.03 6 3GPP TR 25.905 Vocabulary for 3GPP Specifications 3 Definitions, symbols and abbreviations For the purposes of the present document, the definitions, symbols and abbreviations given in TR 21.905

36、6 apply. 4 General Current TSG RAN WG4 specifications have been done according to the requirements for the general purpose base stations (NodeBs) applications. For the UTRA evolution requirement specifications for other types of base stations are needed as well to take into account different use sce

37、narios and radio environments. In this technical report, base station classification is described and requirements for each base station class are derived. 5 System scenarios This section describes the system scenarios for UTRA operation that are considered when defining base station classes. It als

38、o includes typical radio parameters that are used to derive requirements. 5.1 Indoor Environment 5.1.1 Path Loss Model The indoor path loss model expressed in dB is in the following form, which is derived from the COST 231 indoor model: L = 37 + 20 Log10I + kwiLwi+ 18.3 n(n+2)/(n+1)-0.46) ETSI ETSI

39、TR 125 951 V13.0.0 (2016-01)83GPP TR 25.951 version 13.0.0 Release 13where: R transmitter-receiver separation given in metres kwinumber of penetrated walls of type i Lwiloss of wall type i n number of penetrated floors Two types of internal walls are considered. Light internal walls with a loss fact

40、or of 3.4 dB and regular internal walls with a loss factor of 6.9 dB. If internal walls are not modelled individually, the indoor path loss model is represented by the following formula: L = 37 + 30 Log10I + 18.3 n (n+2)/(n+1)-0.46) where: R transmitter-receiver separation given in metres; n number

41、of penetrated floors Slow fading deviation in pico environment is assumed to be 6 dB. 5.2 Mixed Indoor Outdoor Environment 5.2.1 Propagation Model Distance attenuation inside a building is a pico cell model as defined in Chapter 5.1.1. In outdoors UMTS30.03 model is used 5. Attenuation from outdoors

42、 to indoors is sketched in Figure 5.1 below. In figure star denotes receiving object and circle transmitting object. Receivers are projected to virtual positions. Attenuation is calculated using micro propagation model between transmitter and each virtual position. Indoor attenuation is calculated b

43、etween virtual transmitters and the receiver. Finally, lowest pathloss is selected for further calculations. Only one floor is considered. The total pathloss between outdoor transmitter and indoor receiver is calculated as L = Lmicro+ LOW+ kwiLwi+ a * R , where: Lmicro Micro cell pathloss according

44、UMTS30.03 Outdoor to Indoor and Pedestrian Test Environment pathloss model LOW outdoor wall penetration loss dB R virtual transmitter-receiver separation given in metres; kwi number of penetrated walls of type I; Lwi loss of wall type I; a = 0.8 attenuation dB/m Slow fading deviation in mixed pico-m

45、icro environment shall be 6 dB. Propagation from indoors to outdoors would be symmetrical with above models. ETSI ETSI TR 125 951 V13.0.0 (2016-01)93GPP TR 25.951 version 13.0.0 Release 13BS MS Virtual positions Figure 5.1: Simulation scenario and propagation model. Parameters related to propagation

46、 models are summarised in Table 5.1. Table 5.1: Parameters related to mixed indoor outdoor propagation model Parameter value Inside wall loss 6.9 dB Outside wall loss 10 dB Slow fading deviation in indoors 6 dB Slow fading deviation in outdoors 6 dB Building size 110 x 110 meters Street size 110 x 1

47、5 meters Room size 22 x 25 meters Number of rooms 5 rooms in 4 rows Corridor size 110 x 5 meters Number of corridors 2 Size of entrance point 5 meters Number of base stations 4 6 BS coordinates tba 5.3 Minimum coupling loss (MCL) Minimum Coupling Loss (MCL) is defined as the minimum distance loss in

48、cluding antenna gain measured between antenna connectors. 5.3.1 MCL for Local Area scenario The minimum coupling loss between Ues is independent of the scenario, therefore the same minimum coupling loss is assumed for all environments. Local area BSs are usually mounted under the ceiling, on wall or

49、 some other exposed position. In 4 chapter 4.1.1.2 a minimal separation of 2 metres between UE and indoor BS is assumed. Free space path loss is defined in 4 as: Path loss dB = 38.25 + 20 log10(d m) Taking into account 0 dBi antenna gain for Local area BS and UE and a body loss of 1 dB at the terminal, a MCL of 45.27 dB is obtained. The additional 2 dB cable loss at the BS as proposed in TR 25.942 is not considered. ETSI ETSI TR 125 951 V13.0.0 (2016-01)103GPP TR 25.951 version 13.0.0 Release 13The assumed MCL values a

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