ETSI TS 102 584-2011 Digital Video Broadcasting (DVB) DVB-SH Implementation Guidelines (V1 3 1)《数字视频广播(DVB) DVB-SH实施指南(版本1 2 1)》.pdf
《ETSI TS 102 584-2011 Digital Video Broadcasting (DVB) DVB-SH Implementation Guidelines (V1 3 1)《数字视频广播(DVB) DVB-SH实施指南(版本1 2 1)》.pdf》由会员分享,可在线阅读,更多相关《ETSI TS 102 584-2011 Digital Video Broadcasting (DVB) DVB-SH Implementation Guidelines (V1 3 1)《数字视频广播(DVB) DVB-SH实施指南(版本1 2 1)》.pdf(575页珍藏版)》请在麦多课文档分享上搜索。
1、 ETSI TS 102 584 V1.3.1 (2011-11) Digital Video Broadcasting (DVB); DVB-SH Implementation Guidelines Technical Specification ETSI ETSI TS 102 584 V1.3.1 (2011-11)2Reference RTS/JTC-DVB-307 Keywords DVB-SH, hybrid, mobile, network, satellite, TV ETSI 650 Route des Lucioles F-06921 Sophia Antipolis Ce
2、dex - 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 present document can be downloaded from: http:/www.etsi.org The present docum
3、ent 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 of dispute, the reference shall be the printing on ETSI printers of the P
4、DF 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 other ETSI documents is available at http:/portal.etsi.org/tb/status/stat
5、us.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 by written permission. The copyright and the foregoing restriction exten
6、d to reproduction in all media. European Telecommunications Standards Institute 2011. European Broadcasting Union 2011. All rights reserved. DECTTM, PLUGTESTSTM, UMTSTMand the ETSI logo are Trade Marks of ETSI registered for the benefit of its Members. 3GPPTM and LTE are Trade Marks of ETSI register
7、ed 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 102 584 V1.3.1 (2011-11)3Contents Intellectual Property Rights 15g3Foreword . 15g3Introduction 15g31 Scope 17g32 References 17g32.
8、1 Normative references . 17g32.2 Informative references 19g33 Definitions and abbreviations . 22g33.1 Definitions 22g33.2 Abbreviations . 23g34 System outline 27g34.1 DVB-SH system capability outline 27g34.1.1 System overview . 28g34.1.2 Frequency planning aspects 30g34.1.3 Other considerations for
9、spectrum efficiency . 33g34.1.4 Frequency bands and their regulatory aspects 34g34.1.4.1 Frequency Allocations and coordination procedures 34g34.1.4.1.1 L band 35g34.1.4.1.2 2 GHz S band (1 980 MHz to 2 010 MHz/2 170 MHz to 2 200 MHz) . 36g34.1.4.1.3 Sound Broadcasting Satellite (SDARS) S band (2 31
10、0 MHz to 2 360 MHz) 37g34.1.4.1.4 2,5 GHz S band (2 500 MHz to 2 690 MHz) . 37g34.1.4.2 Regulatory aspects 37g34.1.4.2.1 Europe . 37g34.1.4.2.2 North America (all bands) . 40g34.2 Main issues addressed by DVB-SH . 41g34.2.1 Differences in propagation characteristics between satellite and terrestrial
11、 channels . 41g34.2.2 LMS channels (in the L and S bands) . 42g34.2.2.1 Empirical Models 42g34.2.2.2 Statistical models (for narrow-band signals) . 42g34.2.2.2.1 Single-state models 43g34.2.2.2.2 Two-state (Lutz) model . 43g34.2.2.2.3 Three-state (Fontan) Model . 43g34.2.2.2.4 Quasi-static Channel M
12、odel 44g34.2.3 Terrestrial Channels 45g34.2.4 Satellite specific issues . 46g34.2.4.1 Satellite Payload architectures 46g34.2.4.2 Nonlinear Payload Distortion Effects 47g34.2.4.3 Phase Noise Aspects . 47g34.2.4.4 Satellite induced Doppler Shift . 47g34.2.5 DVB-SH Impairments Countermeasures 49g34.2.
13、5.1 LMS Mobile Channel Impact Mitigation 49g34.2.5.1.1 Exploitation of Time and Space Diversity . 49g34.2.5.1.2 Robust Demodulator Operations . 49g34.2.5.2 Nonlinear Channel Impairments Countermeasures . 50g34.2.6 Receiver characteristics 50g34.2.6.1 Vehicular reception constraints . 51g34.2.6.2 Han
14、dheld reception constraints (pedestrian) . 51g34.2.7 Terminal High-level architecture 52g34.2.8 Compatibility with Existing DVB-H System Features . 52g34.2.8.1 Battery-powered receivers 52g34.2.8.1.1 Time slicing . 52g34.2.8.1.2 Low-power Microelectronics 52g34.2.8.1.3 Antenna Diversity (for S-band)
15、 . 52g3ETSI ETSI TS 102 584 V1.3.1 (2011-11)44.2.8.2 Service Switching time (Zapping time). 53g34.2.8.3 Support for Variable Bit Rate (VBR) and Statistical Multiplexing (Statmux) 53g34.2.8.4 Multiple QoS support 53g34.2.8.4.1 Introduction . 53g34.2.8.4.2 At physical layer 54g34.2.8.4.3 At link layer
16、 . 54g34.2.8.4.4 At application layer . 54g34.2.8.4.5 Recommendations . 54g34.2.8.5 Service announcements in hybrid networks 55g34.2.8.5.1 Introduction . 55g34.2.8.6 Handover issues 56g34.2.9 Support of Other Frequency Bands . 56g35 System Configurations and possible Deployment 57g35.1 Definitions a
17、nd concepts 57g35.2 Configurations options definitions . 57g35.2.1 Radio configuration 57g35.2.2 Frequency configuration . 58g35.2.3 Topological configuration . 58g35.2.4 Local content insertion configuration . 58g35.2.5 CGC transmitters configuration 60g35.2.6 Receiver configuration 60g35.2.7 Confi
18、guration naming . 61g35.2.8 Low Latency Extension 61g35.3 Examples of system deployment 61g35.3.1 SH-A deployment scenario . 62g35.3.2 SH-B deployment scenario . 62g35.3.3 Less likely transitions . 63g35.3.4 Forbidden configurations 63g35.4 Other “advanced“ hierarchical modulation use cases . 63g35.
19、4.1 Introduction. 63g35.4.2 Use case 1: quality increase 64g35.4.3 Use case 2: capacity increase 64g35.4.4 Use case 3: coverage extension. 64g35.4.5 Use case 4: zapping time reduction 65g35.5 Examples of unequal bandwith configurations. 65g35.5.1 Case 1: “increased satellite capacity with a reduced
20、frequency reuse“ . 66g35.5.2 Case 2: “terrestrial spectrum saving“ 66g35.5.3 Case 3: “digital dividend CGC“ 66g36 Elements at Link and Service layers 67g36.1 Introduction 67g36.2 MPE-IFEC 69g36.2.1 Framework description . 69g36.2.2 Usage in the context of the DVB-SH 73g36.2.3 A practical example 77g
21、36.2.3.1 Introduction . 77g36.2.3.2 Time_slice_fec_identifier . 77g36.2.3.3 MPE-IFEC parameter derivation 78g36.2.3.4 ADST mapping function . 79g36.2.3.5 ADT mapping . 79g36.2.3.6 ADST view . 79g36.2.3.7 ADT view 80g36.2.3.8 FDT generation and code rate computation 82g36.2.3.9 IFEC burst generation
22、. 84g36.2.3.10 MPE-IFEC section header . 86g36.2.3.11 Burst sending arrangement 88g36.2.4 Parameters selection . 91g36.2.4.1 Introduction . 91g36.2.4.2 Recommendations on D 92g36.2.4.3 Recommendation on B and S 93g36.2.4.4 Selection of M and code rate . 93g3ETSI ETSI TS 102 584 V1.3.1 (2011-11)56.2.
23、4.5 Parameter overall selection logic 95g36.2.4.6 Recommendations on signalling parameters . 96g36.2.5 Simulated performance . 96g36.2.5.1 ESR5(20) performance 96g36.2.5.1.1 LMS-ITS 50 kmph 96g36.2.5.1.2 LMS-SU 97g36.2.5.1.3 Recommended class 1 configuration . 97g36.2.5.1.4 TU6 for hybrid frequency
24、97g36.2.5.1.5 TU6 for non-hybrid frequency 98g36.2.5.2 Zapping time performance 98g36.2.5.2.1 Introduction . 98g36.2.5.2.2 Definitions . 99g36.2.5.2.3 Principles for zapping time analysis in class 1 100g36.2.5.2.4 Zapping performance with measured quality during the zapping period 102g36.2.6 Memory
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