ETSI ETR 328-1996 Transmission and Multiplexing (TM) Asymmetric Digital Subscriber Line (ADSL) Requirements and Performance《传输和复用(TM) 非对称数字用户线路(ADSL) 要求和性能》.pdf
《ETSI ETR 328-1996 Transmission and Multiplexing (TM) Asymmetric Digital Subscriber Line (ADSL) Requirements and Performance《传输和复用(TM) 非对称数字用户线路(ADSL) 要求和性能》.pdf》由会员分享,可在线阅读,更多相关《ETSI ETR 328-1996 Transmission and Multiplexing (TM) Asymmetric Digital Subscriber Line (ADSL) Requirements and Performance《传输和复用(TM) 非对称数字用户线路(ADSL) 要求和性能》.pdf(23页珍藏版)》请在麦多课文档分享上搜索。
1、STD.ETS1 ETR IZA-ENGL L77b 3400855 OLb0038 175 ETSI TEIHNICAL REPORT ETR 328 November 1996 Source: TCKM Reference: DTRKM-06001 ICs: 33.020 Key words: ADSL, digital, access, transmission, multimedia, subscriber Transmission and Multiplexing (TM); Asymmetric Digital Subscriber Line (ADSL); Requirement
2、s and performance ETSI European Telecommunications Standards Institute ETSI Secretariat Postal address: F-O6921 Sophia Antipolis CEDEX - FRANCE Office address: 650 Route des Lucioles - Sophia Antipolis - Valbonne - FRANCE X.400: c=fr, a=atlas, p=etsi, c=secretariat - Internet: secretariatetsi.fr Tel
3、.: +33 4 92 94 42 O0 - Fax: +33 4 93 65 47 16 - Copyright Notification: No part may be reproduced except as authorized by written permission. The copyright and the foregoing restriction extend to reproduction in all media. 8 European Telecommunications Standards Institute 1996. All rights reserved.
4、Page 2 ETR 328: November 1996 Whilst every care has been taken in the preparation and publication of this document, errors in content, typographical or otherwise, may occur. If you have comments concerning its accuracy, please write to “ETSI Editing and Committee Support Dept.“ at the address shown
5、on the title page. Page 3 ETR 328: November 1996 Contents Foreword . 5 Scope 7 References 7 Definitions. symbols and abbreviations . 7 3.1 Definitions 7 3.2 Symbols . 7 3.3 Abbreviations . 7 Bearer channel allocations 8 Noise models . 8 5.1 Injection method 8 5.2 Crosstalk noise sources . 8 Test loo
6、ps 10 ADSUPOTS splitter impedances 22 Testing . 22 8.1 Maximum stress linearity test 22 History 23 STD-ETSI ETR 328-ENGL L77b 3400855 OLb004L 7bT Page 4 ETR 328: November 1996 Blank page Page 5 ETR 328: November 1996 Foreword This ETSI Technical Report (ETR) has been produced by the Transmission and
7、 Multiplexing (TM) Technical Committee of the European Telecommunications Standards Institute (ETSI). - STD-ETSI ETR 328-ENGL L77b 3400855 OLb0043 532 Page 6 ETR 328: November 1996 Blank page STD-ETSI ETR 328-ENGL 177b 3400855 U1b0044 479 Page 7 ETR 328: November 1996 1 Scope This ETR describes a tr
8、ansmission technique called Asymmetric Digital Subscriber Line (ADSL). The requirements for the ADSL transmission system and the transmission performance are defined in this report. ADSL allows the provision of a variety of digital channels on the same, single subscriber line as the analogue telepho
9、ne service. An ADSL system contains several digital channels. Some of them are full duplex low-speed channels and the others are simplex high-speed channels. The high-speed channels are transported only in the direction to the customer premises. This ETR is based on ANSI T1.413 l provided by the ANS
10、I committee T1 El .4 and contains only specific European topics not covered by ANSI T1.413 111. These are, for example, the test requirements including test noise and test loops for transportation of n x 2 048 Mbis (n = 1,2,3) and the so-called POTS splitter, which separates the analogue telephone b
11、and from that used by the ADSL transmission system (where POTS is Plain Old Telephony Service). 2 References 1 ANSI T1.413-1995: “Telecommunications - Network and Customer Installation Interfaces - Asymmetric Digital Subscriber Line (ADSL) Metallic Interface.“ 3 Definitions, symbols and abbreviation
12、s 3.1 Definitions 2M1: Classification of an ADSL system capable of transporting 6 144 kbit/s downstream towards the ADSL Network Termination (ANT). 2M2: Classification of an ADSL system capable of transporting 4 096 kbis downstream towards the ANT. 2M3: Classification of an ADSL system capable of tr
13、ansporting 2 048 kbis downstream towards the ANT. 3.2 c G L R 3.3 ADSL ALT ANSI ANT ATU-C ATU-R BRA dBm ETR FDM FEC HDB3 ISDN PE POTS PSD TC Symbols capacitance nanofarads per km (nF/km) leakance Siemens per krn (S/km) inductance microHenries per km (pH/km) resistance Ohms per km (inlkm) Abbreviatio
14、ns Asymmetric Digital Subscriber Line ADSL Line Termination (in l referred to as ATU-C) American National Standards Institute ADSL Network Termination (in l referred to as ATU-R) ADSL Transmission Unit - Central Office ADSL Transmission Unit - Remote Basic Rate Access deciBel referred to 1 milliwatt
15、 ETSI Technical Report Frequency Division Multiplexing Forward Error Correction High Density Bipolar 3 Integrated Services Digital Network Pol yEthylene Plain Old Telephony Service Power Spectral Density Trellis Coding STD-ETSI ETR 328-ENGL 177b 3Li00855 O1bOO95 305 Transport class 2M1 2M2 Page 8 ET
16、R 328: November 1996 Configuration Simplex downstream rate Duplex rate(s) kbis kbis 6 144 160 (notel) 1 4 096 160 (notel) 64 (C) (note2) 4 Bearer channel allocations 2M2 2M3 The transport class and configuration of those which are appropriate for 2 048 kbit/s applications are shown in table 1. The n
17、oise models and test loops presented in this ETR are for bearer channel allocations as shown in table 1. 64 (C) (note2) 2 4 096 64 (C) (note2) 1 2 048 160 (notel) Table 1 : Bearer channel allocations I I16 (C) (note2) NOTE 2: This duplex channel is reserved for control purposes of the application. 5
18、 Noise models Two noise sources are described for the testing of ADSL systems. These are frequency-domain sources that model the steady state operating environment caused by crosstalk from adjacent wire pairs due to differing transmission systems. The two models differ due to the need to cater to co
19、untries that may or may not have High Density Bipolar 3 (HDB3) based primary rate systems operating at 2 048 kbit/s in their access networks. Model A is for the case where no such interferers exist while model B includes the crosstalk coupling effects of these types of systems. The need for amateur
20、radio interferers was specially expressed by the countries supporting noise model A and is therefore included only there. 5.1 Injection method The injection circuit should have a Thevenin impedance of at least 4 kf. The spectral density of the crosstalk noise sources should be measured at the output
21、 of the injection circuit, replacing the test loop by a 50 R resistor and with no terminal equipment connected. 5.2 Crosstalk noise sources The Power Spectral Density (PSD) of the crosstalk noise sources used for performance testing is given in figure 1 for model A and in figure 2 for model B. Model
22、 A includes discrete tones, which represent radio frequency interference that is commonly observed, especially on wire pairs routed over-ground. Further details of the specification of these noise models are shown in tables 2 to 4. The resulting wideband noise power over the frequency range 1 kHz to
23、 1,5MHz for model A is -49,4 dBm * 0,5 dBm and for model B is -43,O dBm * 0,5 dBm. The noise probability density function should be approximately Gaussian with a crest factor greater than or equal 5. The accuracy of the power spectral density should be when measured with a resolution bandwidth of 1
24、kHz. 1 dB over the frequency range 1 kHz to 13 MHz, NOTE: For the ADSL Line Termination (ALT) transmitter mask it is assumed that the slope from the pass band to the upper stop band is -80 dB/decade due to the 4th order low pass filtering as it is assumed in annex 8.4 of l. Page 9 ETR 328: November
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