ETSI ES 202 488-2-2003 Access and Terminals (AT) Second Generation Transmission Systems for Interactive Cable Television Services - IP Cable Modems Part 2 Radio frequency interface_1.pdf
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1、 ETSI ES 202 488-2 V1.1.1 (2003-09)ETSI Standard Access and Terminals (AT);Second Generation Transmission Systems for InteractiveCable Television Services - IP Cable Modems;Part 2: Radio frequency interface specificationETSI ETSI ES 202 488-2 V1.1.1 (2003-09) 2 Reference DES/AT-020043-02 Keywords ac
2、cess, broadband, cable, data, IP, IPcable, modem 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 notic
3、e Individual copies of the present document can be downloaded from: http:/www.etsi.org The present document may be made available in more than one electronic version or in print. In any case of existing or perceived difference in contents between such versions, the reference version is the Portable
4、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 document should be aware that the document may be subject to revision or change of status. Information on
5、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, send your comment to: editoretsi.org Copyright Notification No part may be reproduced except as authorized by written permission. The copyright a
6、nd the foregoing restriction extend to reproduction in all media. European Telecommunications Standards Institute 2003. All rights reserved. DECTTM, PLUGTESTSTM and UMTSTM are Trade Marks of ETSI registered for the benefit of its Members. TIPHONTMand the TIPHON logo are Trade Marks currently being r
7、egistered by ETSI for the benefit of its Members. 3GPPTM is a Trade Mark of ETSI registered for the benefit of its Members and of the 3GPP Organizational Partners. ETSI ETSI ES 202 488-2 V1.1.1 (2003-09) 3 Contents Intellectual Property Rights19 Foreword.19 Introduction 19 1 Scope and purpose20 1.1
8、Scope20 1.2 Requirements20 1.3 Background 21 1.3.1 Service goals.21 1.3.2 Reference architecture 22 1.3.3 Categories of interface specification.22 1.3.4 Statement of compatibility22 1.4 Conventions for the present document .23 2 References 23 3 Definitions and abbreviations.25 3.1 Definitions25 3.2
9、Abbreviations .33 4 Functional assumptions 35 4.1 Broadband access network .35 4.2 Equipment assumptions36 4.2.1 Frequency plan36 4.2.2 Compatibility with other services .36 4.2.3 Fault isolation impact on other users 36 4.2.4 Cable system terminal devices36 4.3 RF channel assumptions.36 4.3.1 Trans
10、mission downstream 37 4.3.2 Transmission upstream .37 4.3.2.1 Availability38 4.4 Transmission levels 38 4.5 Frequency inversion .38 5 Communication protocols 38 5.1 Protocol stack .39 5.1.1 CM and CMTS as hosts 39 5.1.2 Data Forwarding Through the CM and CMTS.40 5.1.2.1 General40 5.1.2.2 CMTS Forwar
11、ding Rules 41 5.1.2.3 CM forwarding rules.41 5.1.2.3.1 CPE MAC address acquisition 41 5.1.2.3.2 Forwarding 41 5.2 The MAC forwarder.42 5.2.1 Rules for data-link-layer forwarding.43 5.3 Network layer.43 5.3.1 Requirements for IGMP management 44 5.3.1.1 IGMP timer requirements .44 5.3.1.2 CMTS rules.4
12、4 5.3.1.3 CM rules44 5.3.1.3.1 Multicast forwarding requirements45 5.4 Above the network layer 46 5.5 Data link layer 46 5.5.1 LLC sublayer 46 5.5.2 Link-layer security sublayer .46 5.5.3 MAC sublayer.46 5.5.3.1 MAC service definition.47 5.6 Physical layer .47 ETSI ETSI ES 202 488-2 V1.1.1 (2003-09)
13、 4 5.6.1 Downstream transmission convergence sublayer .47 5.6.2 PMD sublayer .47 5.6.2.1 Interface points47 6 Physical Media Dependent (PMD) sublayer specification.47 6.1 Scope47 6.2 Upstream 48 6.2.1 Overview 48 6.2.2 Signal processing requirements 49 6.2.3 Modulation formats.51 6.2.4 R-S encode52
14、6.2.4.1 R-S encode modes.52 6.2.4.2 R-S bit-to-symbol ordering .52 6.2.5 R-S frame structure.52 6.2.5.1 R-S codeword length.53 6.2.5.1.1 Fixed codeword length 53 6.5.2.1.2 Shortened last codeword53 6.2.6 TDMA byte interleaver.54 6.2.6.1 Byte interleaver parameters.54 6.2.6.2 Interleaver operating mo
15、des54 6.2.6.2.1 Fixed mode 54 6.2.6.2.2 Dynamic mode.55 6.2.7 Scrambler (randomizer) 56 6.2.8 TCM encoder57 6.2.8.1 TCM R-S bytes to symbol mapping58 6.2.9 Preamble prepend .60 6.2.10 Modulation rates .60 6.2.11 S-CDMA framer and interleaver 60 6.2.11.1 S-CDMA framing considerations60 6.2.11.2 Mini-
16、slot numbering61 6.2.11.2.1 Mini-slot numbering parameters in UCD 62 6.2.11.2.2 Mini-slot numbering examples63 6.2.11.3 Transmission time .64 6.2.11.4 Latency considerations64 6.2.11.5 Spreader-off bursts for maintenance on S-CDMA channel.64 6.2.12 S-CDMA framer .66 6.2.12.1 Subframe definition.66 6
17、.2.12.2 Framer operation.67 6.2.12.2.1 Rules for preamble and coded TCM symbols .67 6.2.12.2.2 Rules for uncoded symbols and the uncoded TCM subsymbols .67 6.2.12.2.3 Subframe example .68 6.2.12.2.4 Frame transmission68 6.2.13 Symbol mapping.68 6.2.14 S-CDMA spreader 76 6.2.14.1 Code Hopping .77 6.2
18、.15 Transmit pre-equalizer78 6.2.16 Spectral shaping79 6.2.16.1 Upstream frequency agility and range.80 6.2.16.2 Spectrum format80 6.2.17 Relative processing delays80 6.2.18 Transmit power requirements .80 6.2.18.1 TDMA transmit power calculations81 6.2.18.2 S-CDMA transmit power calculations 82 6.2
19、.18.3 Transmit power step size.83 6.2.19 Burst profiles 83 6.2.19.1 Ranging offset .84 6.2.19.2 TDMA reconfiguration times85 6.2.19.3 S-CDMA reconfiguration times86 6.2.20 Burst timing convention86 6.2.21 Fidelity requirements 87 6.2.21.1 Spurious emissions87 6.2.21.1.1 Adjacent channel spurious emi
20、ssions 88 ETSI ETSI ES 202 488-2 V1.1.1 (2003-09) 5 6.2.21.1.2 Spurious emissions in 5 MHz to 42 MHz89 6.2.21.2 Spurious emissions during burst on/off transients.89 6.2.21.3 Modulation Error Ratio (MER).89 6.2.21.3.1 Definitions .90 6.2.21.3.2 Requirements.91 6.2.21.4 Filter distortion92 6.2.21.4.1
21、Amplitude92 6.2.21.4.2 Phase92 6.2.21.5 Carrier phase noise92 6.2.21.6 Channel frequency accuracy .92 6.2.21.7 Modulation rate accuracy92 6.2.21.8 Modulation timing jitter 93 6.2.21.8.1 Symbol timing titter for asynchronous operation 93 6.2.21.8.2 Chip timing jitter for synchronous operation.93 6.2.
22、22 Upstream demodulator input power characteristics93 6.2.23 Upstream electrical output from the CM 94 6.3 Downstream .94 6.3.1 Downstream protocol94 6.3.2 Scalable interleaving to support low latency 94 6.3.3 Downstream frequency plan .95 6.3.4 CMTS output electrical.95 6.3.5 Downstream electrical
23、input to CM95 6.3.6 CM BER performance 96 6.3.6.1 64 QAM 96 6.3.6.1.1 64 QAM CM BER performance96 6.3.6.1.2 64 QAM image rejection performance 96 6.3.6.1.3 64 QAM adjacent channel performance 96 6.3.6.2 256 QAM 96 6.3.6.2.1 256 QAM CM BER performance96 6.3.6.2.2 256 QAM image rejection performance 9
24、6 6.3.6.2.3 256 QAM adjacent channel performance 97 6.3.7 CMTS timestamp jitter .97 6.3.7.1 CMTS master clock jitter for asynchronous operation97 6.3.7.2 CMTS master clock jitter for synchronous operation .98 6.3.7.3 CMTS master clock frequency drift for synchronous operation .98 6.3.8 CMTS clock ge
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