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本文(ETSI EN 301 213-5-2001 Fixed Radio Systems Point-to-Multipoint Equipment Point-to-Multipoint Digital Radio Systems in Frequency Bands in the Range 24 25 GHz to 29 5 GHz Using Diffe_1.pdf)为本站会员(刘芸)主动上传,麦多课文库仅提供信息存储空间,仅对用户上传内容的表现方式做保护处理,对上载内容本身不做任何修改或编辑。 若此文所含内容侵犯了您的版权或隐私,请立即通知麦多课文库(发送邮件至master@mydoc123.com或直接QQ联系客服),我们立即给予删除!

ETSI EN 301 213-5-2001 Fixed Radio Systems Point-to-Multipoint Equipment Point-to-Multipoint Digital Radio Systems in Frequency Bands in the Range 24 25 GHz to 29 5 GHz Using Diffe_1.pdf

1、ETSI EN 301 213-5 1.1.1 (2001-10) European Sfandard (Telecommunicafions series) Fixed Radio Systems; Point-to-multipoint equipment; Point-to-multipoint digital radio systems in frequency bands in the range 24,25 GHz to 29,5 GHz using different access methods; Part 5: Multi-Carrier Time Division Mult

2、iple Access (MC-TDMA) methods 2 ETSI EN 301 213-5V1.1.1 (2001-10) Reference DENITM-04099 Keywords DRRS, multipoint, RLL, TDMA, transmission, FWA, radio ETSI 650 Route des Lucioles F-O6921 Sophia Antipolis Cedex - FRANCE Tel.: +33 4 92 94 42 O0 Fax: +33 4 93 65 47 16 Siret No 348 623 562 00017 - NAF

3、742 C Association but non lucratif enregistre la Sous-prfecture de Grasse (06) No 7803/88 Important notice Individual copies of the present document can be downloaded from: http:l/w.etsi .orq The present document may be made available in more than one electronic version or in print. In any case of e

4、xisting or perceived difference in contents between such versions, the reference version is the Portable Document Format (PDF). In case of dispute, the reference shall be the printing on ETSI printers of the PDF version kept on a specific network drive within ETSI Secretariat. Users of the present d

5、ocument should be aware that the document may be subject to revision or change of status. Information on the current status of this and other ETSI documents is available at 3 If you find errors in the present document, send your comment to: Cori vriaht Notifica tion No part may be reproduced except

6、as authorized by written permission. The copyright and the foregoing restriction extend to reproduction in all media. O European Telecommunications Standards Institute 2001. All rights reserved. ETSI 3 ETSI EN 301 213-5 VI .I .I (2001-10) Contents Intellectual Property Rights . .5 Foreword . 5 1 2 3

7、 3.1 3.2 4 4.1 4.2 4.2.1 4.2.2 4.3 4.4 4.5 4.6 4.7 4.8 4.9 5 5.1 5.2 5.3 5.4 5.5 5.5.1 5.5.2 5.5.3 5.5.4 5.5.4.1 5.5.4.2 5.5.4.3 5.5.4.4 5.5.5 5.5.6 5.5.7 5.6 5.6.1 5.6.2 5.6.3 5.7 5.7.1 5.7.2 5.7.3 5.7.4 5.7.4.1 5.7.4.2 5.7.4.3 5.7.5 Scope 6 References . .6 Definitions and abbreviations .7 Definiti

8、ons . 7 Abbreviations . . 7 General characteristics .7 General system architecture . 7 Frequency bands and channel arrangements 7 Channel plan . 7 Channel arrangements . 7 Compatibility requirements 8 Environmental conditions . 8 8 Electromagnetic compatibility conditions 8 TMN interfaces 8 Synchron

9、ization of interface bit rates . 9 Branching/feeder/antenna requirements . 9 System parameters for MC-TDMA P-MP systems 9 System capacity Round trip delay. Transparency Voice coding met Transmitter characterist Transmitter output power Transmitter nominal outp . Transmitter power and frequency contr

10、ol . central radio station RF-spectrum density mask for the terminal station . Discrete CW components exceeding the spectrum de RF-spectrum density mask for the repeater station . Spurious emissions (external) . Radio frequency tolerance Rx local oscillator frequency arrangements Spurious emissions

11、(external) . Dynamic level range . 14 BER as a function of Receiver input Signal Level (RSL). 14 Equipment Residual BER . 14 Interference sensitivity 15 Co-channel interference (external). . 15 Adjacent channel interference (external) 15 CW interference 15 Distortion sensitivity . 15 Tx local oscill

12、ator frequency arrangements Receiver characteristics. . Receiver IF System performance . 14 . . 6 Annex A (normative): Types of interfaces at the user equipment and the network node . 15 System type codes for regulatory procedures . 16 ETSI 4 ETSI EN 301 213-5V1.1.1 (2001-10) Annex B (informative):

13、Bibliography . 17 History 19 ETSI 5 ETSI EN 301 213-5V1.1.1 (2001-10) 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 no

14、n-members, and can be found in ETSI SR O00 314: “Intellectual Property Rights (7PRs); Essential, orpotentially Essential, IPRs notlJied to ETSI in respect ofETSI standards“, which is available from the ETSI Secretariat. Latest updates are available on the ETSI Web server (p). Pursuant to the ETSI IP

15、R 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 O00 3 14 (or the updates on the ETSI Web server) which are, or may be, or may become, essential to the present document. Foreword Th

16、is European Standard (Telecommunications series) has been produced by ETSI Technical Committee Transmission and Multiplexing (TM). The present document defines the requirements of radio terminal and radio-relay equipment and associated interfaces. The present document is part 5 of a multi-part deliv

17、erable covering the Point-to-multipoint equipment; Point-to-multipoint digital radio systems in frequency bands in the range 24,25 GHz to 29,5 GHz using different access methods, as identified below: Part 1 : “Basic parameters“; Part 2: Part 3 : Part 4: Part 5: “Frequency Division Multiple Access (F

18、DMA) methods“; “Time Division Multiple Access (TDMA) methods“; “Direct Sequence Code Division Multiple Access (DS-CDMA) methods“; “Multi-Carrier Time Division Multiple Access (MC-TDMA) methods“. Parts 2 to 5 are intended to be used in conjunction with part 1, describing the basic parameters common t

19、o all access methods. A basic description of the different access methods and a comparison among them are provided in TR 101 274 2. The former title of the present document was: “Transmission and Multiplexing (TM); Digital Radio Relay Systems (DRRS); Point-to-multipoint DRRS in frequency bands in th

20、e range 24,25 GHz to 29,5 GHz using different access methods; Part 5: Multi-Carrier Time Division Multiple Access (MC-TDMA) methods“. National transposition dates Date of adoption of this EN: Date of latest announcement of this EN (doa): Date of latest publication of new National Standard or endorse

21、ment of this EN (dop/e): Date of withdrawal of any conflicting National Standard (dow): 19 October 200 1 3 1 January 2002 3 1 July 2002 3 1 July 2002 ETSI 6 ETSI EN 301 213-5V1.1.1 (2001-10) 1 Scope The present document is to be used in conjunction with EN 301 213-1 i, describing the basic parameter

22、s common to all access methods. The present document specifies the minimum requirements for system parameters of Multi-Carrier Time Division Multiple Access (TDMA) Point-to-Multipoint (P-MP) Radio Systems in the terrestrial fixed services operating in the band 24,5 GHz to 29,5 GHz (see CEPT/ERC Reco

23、mmendation T/R 13-02 3). Only sections specific to TDMA are described in respect to the clauses stated in EN 301 213-1 i. Multi-Carrier Time Division Multiple Access (MC-TDMA) is an alternative to TDMA, FDMA and CDMA covered in other parts of the present document. In MC-TDMA Point to Multipoint (P-M

24、P) systems, a central station broadcasts information to terminal stations in a continuous Time Division Multiplex (TDM) or in a burst TDMA mode. The CRS andor TS may transmit one or more sub-carriers at various frequencies, bandwidths, modulation and power levels, however the normative requirements

25、relating to channel bandwidths and spectrum masks must be met. The Terminal stations transmit in TDMA mode. The users may have access to the spectrum by sharing it through time multiplexing. The present document is a new draft which contains: Introduction of a Multi-Carrier TDMA system, where a sing

26、le transmitter can transmit more than one sub - carrier. 2 Re fe re nces 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 andor edition number or version

27、number) or non-specific. For a specific reference, subsequent revisions do not apply. For a non-specific reference, the latest version applies. il ETSI EN 301 213-1 : “Fixed Radio Systems; Point-to-multipoint equipment; Point-to-multipoint digital radio systems in frequency bands in the range 24,25

28、GHz to 29,5 GHz using different access methods; Part 1: Basic parameters“. ETSI TR 101 274: “Transmission and Multiplexing (TM); Digital Radio Relay Systems (DRRS); Point-to-multipoint DRRS in the access network: Overview of different access techniques“. CEPT/ERC Recommendation T/R 13-02: “Preferred

29、 channel arrangements for fixed services in the range 22,O - 29,5 GHz“. ITU-R Recommendation F. 1249: “Maximum equivalent isotropically radiated power of transmitting stations in the fixed service operating in the frequency band 25,25 - 27,5 GHz shared with the inter-satellite service“. 21 31 41 ETS

30、I 7 ETSI EN 301 213-5V1.1.1 (2001-10) Channel Spacing MHz System Type A Minimum bit rate for transmission and reception (Mbis) System Type B Minimum bit rate for transmission and reception (Mbis) System Type C Minimum bit rate for transmission and reception (Mbis) 3 3,5 MHz 4 Mbis 8 Mbis 12 Mbitk 3.

31、1 7 MHz 8 Mbis Definitions and abbreviations 14 MHz 28 MHz 56 MHz 16 Mbis 32 Mbitk 64 Mbis De fi nit ions 16 Mbitk For the purposes of the present document, the terms and definitions given in EN 301 213-1 11 and the following apply: gross-bit-rate: transmission bit rate over the air NOTE 1 : In case

32、 of a transmitter working in burst mode the gross bit rate is the instantaneous maximum transmission bit rate during the burst. The gross bit rate has a unique relationship to the symbol rate through the implemented modulation format. multi-carrier: system where more than one modulated sub-carrier i

33、s radiated from the same transmitter NOTE 2: A system that uses several transmitters into a non-active antenna is not considered as a multi-carrier system. 32 Mbis 64 Mbitk 128 Mbitk 3.2 Abbreviations For the purposes of the present document, the abbreviations defiied in EN 301 213-1 i and the follo

34、wing apply: CSmin minimum practical Channel Separation (for a given radio-frequency channel arrangement) 24 Mbitk 4 48 Mbis 96 Mbitk 192 Mbitk General characteristics 4.1 General system architecture See EN 301 213-1 i, clause 4.1. 4.2 Frequency bands and channel arrangements 4.2.1 Channel plan Bands

35、 allocated to the Fixed Service in the range 24,5 GHz to 29,5 GHz shall be used according to CEPT/ERC Recommendation T/R 13-02 3, annexes B and C. Regulatory bodies may choose appropriate parts of the above mentioned frequency bands for the application for Point-to-Multipoint systems. 4.2.2 Channel

36、arrangements The system shall meet at least one or more of the channel arrangements listed in table 1. Table 1: Channel arrangement 112 MHz I 256 Mbis 384 Mbis ETSI 8 ETSI EN 301 213-5V1.1.1 (2001-10) NOTE 1 : The minimum transmission bit rate is defied as the gross bit rate of the multi-carrier sys

37、tem assumed as sum of all sub-carriers gross bit rate. The sum of all upstream sub-carriers transmission bit rates for a fully equipped system shall meet the requirements for the system type declared by the manufacturer as per table 1. Where a different aggregate gross bit rate applies in each direc

38、tion, the system type declared shall indicate this by giving the system type for the downstream followed by a hyphen and then the system type for the upstream. For example, a system conforming to type C in the downstream direction and type A in the upstream direction should be declared as a type C-A

39、. Where the system type differs for upstream and downstream, the system shall meet all requirements for the declared system type for each direction. NOTE 2: Systems may offer a combination of Type A, Type B, and Type C, provided that such a system, when operating in mixed mode, complies with the mos

40、t stringent spectral mask for the types offered. A mix mode could consist of a system that operates with different system type on a per sub-carrier or time-slot basis or both. NOTE 3: System Type A is primarily covering 4 states or equivalent modulation. System Type B is primarily covering 16 states

41、 or equivalent modulation. System Type C is primarily covering 64 states or equivalent modulation. “or equivalent“ means providing the same spectral efficiency and system performance regardless of the actual modulation scheme. NOTE 4: For regulatory purposes in national procedures for licensing radi

42、o equipment according to the present document, the above system types shall be identified by the “system type codes“ reported in annex A. NOTE 5: Allocated RF channels may be occupied by systems using any number of sub-carriers or size of sub-carrier bandwidth within a specific channel, as long as t

43、he spectrum mask for the allocated RF channel is not exceeded, for any configuration of sub-carriers. NOTE 6: The CRS transmission, defined as the “downstream“ direction, may be continuous, i.e. TDM (Time Division Multiplex). The CRS may transmit in the downstream direction even if there are no acti

44、ve calls, for the purpose of synchronization of the Terminal Stations. The Terminal Stations (TS) may transmit in timeslots allocated by control signals from the CS, or on a fixed basis. The TS transmission direction is defined as “upstream“. A TS may transmit control, bandwidth requests or signalli

45、ng information even during the absent of users activities. TS transmissions consist of bursts of fixed or variable duration, usually an integer multiple of a fundamental timeslot duration. 4.3 Com pati bi I i ty requirements See EN 301 213-1 i, clause 4.3. 4.4 Envi ron m e n ta I cond i ti ons See E

46、N 301 213-1 i, clause 4.4. 4.5 Power supply See EN 301 213-1 i, clause 4.5. 4.6 Electromagnetic compatibility conditions See EN 301 213-1 i, clause 4.6. 4.7 TMN interfaces See EN 301 213-1 i, clause 4.7 ETSI 9 ETSI EN 301 213-5V1.1.1 (2001-10) 4.8 Synchronization of interface bit rates See EN 301 21

47、3-1 i, clause 4.8. 4.9 Branch i nglfeed e r/an te n na req u i rem en ts See EN 301 213-1 i, clause 4.9. 5 System parameters for MC-TDMA P-MP systems NOTE: Where a reference is made to the number of states of a modulation scheme or to the system type class, an equivalent modulation scheme may be app

48、lied, provided the system parameters are met. 5.1 System capacity See EN 301 213-1 i, clause 5.1. 5.2 Round trip delay See EN 301 213-1 i, clause 5.2. 5.3 Transparency See EN 301 213-1 i, clause 5.3. 5.4 Voice coding methods See EN 301 213-1 i, clause 5.4. 5.5 Trans m i tt e r c h a ra ct e ri s t i

49、 cs See EN 301 213-1 i, clause 5.5. 5.5.1 Transmitter output power The total mean power of the composite multi-carrier system shall refer to EN 301 213-1 i, clause 5.5.1. 5.5.2 Transmitter nominal output power See EN 301 213-1 i, clause 5.5.2. The power output of the transmitter at point C and C (see figure 2 of EN 301 213-1 i) shall be appropriate to the mode of use: CRS, RS, or TS “broadcast mode“. The power output shall be in conformance with EN 301 213-1 i; CRS, RS or TS operating in TDMA burst mode. The power

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