ETSI TS 102 831-2012 Digital Video Broadcasting (DVB) Implementation guidelines for a second generation digital terrestrial television broadcasting system (DVB-T2) (V1 2 1)《数字视频广播(_1.pdf
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1、 ETSI TS 102 831 V1.2.1 (2012-08) Digital Video Broadcasting (DVB); Implementation guidelines for a second generation digital terrestrial television broadcasting system (DVB-T2) Technical Specification ETSI ETSI TS 102 831 V1.2.1 (2012-08)2Reference RTS/JTC-DVB-316 Keywords broadcasting, digital, DV
2、B, modulation, TV 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 Individual copies of the pres
3、ent 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 Document Format (PDF). In case
4、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 the current status of this and
5、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: http:/portal.etsi.org/chaircor/ETSI_support.asp Copyright Notification No part may be reproduced except as authorized
6、 by written permission. The copyright and the foregoing restriction extend to reproduction in all media. European Telecommunications Standards Institute 2012. European Broadcasting Union 2012. All rights reserved. DECTTM, PLUGTESTSTM, UMTSTMand the ETSI logo are Trade Marks of ETSI registered for th
7、e benefit of its Members. 3GPPTM 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 TS 102 831 V1.2.1 (2012-08)3Contents Intellectual Property R
8、ights 10g3Foreword . 10g3Introduction 10g31 Scope 12g32 References 12g32.1 Normative references . 12g32.2 Informative references 12g33 Definitions, symbols and abbreviations . 14g33.1 Definitions 14g33.2 Symbols 15g33.3 Abbreviations . 15g34 Overview of DVB-T2 . 17g34.1 Commercial requirements overv
9、iew . 17g34.2 Background design principles 17g34.3 Benefits of DVB-T2 compared to DVB-T . 18g34.4 System overview 18g34.4.1 Introduction. 18g34.4.2 Architectural model 19g34.4.3 Specification documents describing DVB-T2 21g34.4.4 Physical-layer specification 21g34.4.5 Additional sources of assistanc
10、e for implementers . 23g34.5 Key technologies 23g34.5.1 Physical Layer Pipes (PLPs) . 23g34.5.1.1 Input Mode A 24g34.5.1.2 Input Mode B 24g34.5.2 Additional bandwidths (1,7 MHz and 10 MHz) . 24g34.5.3 Extended carrier mode (for 8 K, 16 K, 32 K) . 24g34.5.4 Alamouti-based MISO (in frequency direction
11、) . 25g34.5.5 Preambles (P1 and P2) 25g34.5.6 Pilot patterns . 26g34.5.7 256-QAM 26g34.5.8 Rotated constellations . 27g34.5.9 16 K and 32 K FFT sizes and 1/128 guard-interval fraction . 28g34.5.10 LDPC/BCH error control coding 28g34.5.11 Interleaving stages (time, bit, cell, frequency) 29g34.5.12 Pe
12、ak-to-Average Power Ratio (PAPR) reduction techniques . 29g34.5.13 Future Extension Frames (FEFs) 29g34.6 Memory and complexity considerations . 30g34.7 Layer 2 signalling . 30g34.7.1 Overview 30g34.7.2 T2 delivery-system descriptor. 31g34.8 Network Topology and Modulator Interface (T2-MI) 31g34.9 T
13、ransmitter identification . 31g35 Choice of parameters 31g35.1 Choice of FFT size . 31g35.2 Choice of extended or normal carrier mode . 32g35.3 Choice of Guard interval 33g35.4 Choice of pilot pattern 34g35.5 Choice of frame length . 36g35.6 Choice of superframe length 37g35.7 Choice of input mode (
14、A or B) . 37g35.8 Choice of number of sub-slices 38g35.8.1 Avoiding undesirable interaction of subslicing with carrier mapping and frequency interleaving . 38g3ETSI ETSI TS 102 831 V1.2.1 (2012-08)45.8.2 Subslicing with multi-frame interleaving . 39g35.9 Choice of time interleaving parameters 39g35.
15、9.1 Trade-off between Time Diversity and Data Rate 40g35.9.2 Trade-off between Time Diversity and Latency . 41g35.9.3 Trade-off between Time Diversity and Power Saving 41g35.10 Choice of rotated constellations . 42g35.11 Choice of code rate, block length and constellation . 44g35.12 Choice of mode a
16、daptation options 44g36 Anatomy of the DVB-T2 signal . 44g36.1 Physical frame structure . 45g36.1.1 Superframe 45g36.1.2 T2-frame . 45g36.1.2.1 Frame-Closing Symbols 48g36.1.3 L1 signalling . 49g36.1.4 Physical-layer pipes 50g36.1.5 Dummy cells . 52g36.1.6 Auxiliary streams 53g36.1.7 FEFs 53g36.1.7.
17、1 FEF Basics 53g36.1.7.2 FEF Signalling 54g36.1.7.3 Possible use cases 55g36.2 Logical frame structure 56g36.2.1 Packets 56g36.2.2 BBFRAMEs, FECFrames and FEC blocks 56g36.2.2.1 BBFRAMEs. . 56g36.2.2.2 FECFRAMES . 56g36.2.2.3 FEC Blocks . 56g36.2.3 Interleaving Frames 56g36.2.4 TI blocks . 57g36.2.5
18、 Mapping to physical frame structure 57g36.2.6 The concept of a T2-system 58g36.3 Capacity 59g36.3.1 Capacity in cells and FEC blocks per frame . 59g36.3.2 Total bit-rates of the T2 system 61g36.3.3 Examples of bit-rates 62g36.4 Overview of interleaving 63g37 Modulator Interface (T2-MI) and network
19、topology 64g37.1 Overview 64g37.2 Statistical multiplexing and service splitting 64g37.3 The T2 gateway and T2-Modulator Interface (T2-MI) 65g37.3.1 The Basic T2-Gateway . 65g37.3.2 Practical T2-Gateways 65g37.4 Distribution of T2-MI packets to transmitters 65g37.5 Over-air distribution . 66g37.6 Re
20、gional/local content insertion . 66g37.7 Networks carrying composite T2-base/T2-lite signals . 67g38 T2-gateway . 67g38.1 Input interface 67g38.2 Generation of one Transport Stream per data PLP . 68g38.2.1 Separate TSs with common control 68g38.2.2 From one big TS . 69g38.2.3 Discussion . 69g38.3 Us
21、e of common PLPs . 69g38.4 PLP grouping and statistical multiplexing 72g38.4.1 PLP groups with the same modulation and coding . 72g38.4.2 T2-aware statistical multiplexing 72g38.5 Mode adaptation . 72g38.6 Scheduling 73g38.6.1 Model for allocating number of FEC blocks to each Interleaving Frame . 74
22、g38.6.1.1 Mode A . 74g3ETSI ETSI TS 102 831 V1.2.1 (2012-08)58.6.1.2 Mode B 74g38.6.1.2.1 Allocation model 1 74g38.6.1.2.2 Allocation model 2 78g38.6.1.2.3 Other allocation strategies . 78g38.6.1.2.4 Use of the allocation models with FEFs 79g38.6.1.2.5 Timing and alignment of collection windows . 79
23、g38.6.2 Scheduling of sub-slices . 80g38.7 Padding methods 80g38.8 Managing the de-jitter buffer 81g38.8.1 The receiver-buffer model 82g38.8.2 Principles of buffer management 83g38.8.3 Choice of design delay 84g38.8.3.1 Single PLP modes with multiple TI-blocks per Interleaving Frame . 84g38.8.3.2 Ty
24、pe 2 PLPs in multiple PLP modes 86g38.8.3.3 Common PLPs in multiple PLP modes . 86g38.8.3.4 Other cases 86g38.8.4 The de-jitter buffer budget 86g38.8.4.1 Multiple PLP cases with variable bit-rate . 86g38.8.4.2 Constant bit-rate 88g38.8.5 Receiver Buffer Management in T2-Lite 89g38.8.6 Other paramete
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