ITU-R REPORT BO 2101-2007 Digital satellite broadcasting system (television sound and data) with flexible configuration《带有灵活配置的数字卫星广播系统(电视 声音和数据)》.pdf
《ITU-R REPORT BO 2101-2007 Digital satellite broadcasting system (television sound and data) with flexible configuration《带有灵活配置的数字卫星广播系统(电视 声音和数据)》.pdf》由会员分享,可在线阅读,更多相关《ITU-R REPORT BO 2101-2007 Digital satellite broadcasting system (television sound and data) with flexible configuration《带有灵活配置的数字卫星广播系统(电视 声音和数据)》.pdf(38页珍藏版)》请在麦多课文档分享上搜索。
1、 Rep. ITU-R BO.2101 1 REPORT ITU-R BO.2101*Digital satellite broadcasting system (television, sound and data) with flexible configuration*(2007) 1 Introduction This Report describes studies undertaken by administrations on DVB-S2, the second-generation specification for satellite broadband applicati
2、ons, developed by the DVB (Digital Video Broadcasting) Project in 2003, targeting the following satellite applications: TV and sound broadcasting, interactivity (i.e. Internet Access) and contribution services, such as TV contribution links and DSNG (digital satellite news gathering). DVB-S2 1, 2, 3
3、 is the second-generation system for satellite broadband services, defined by DVB in 2003, in the tenth anniversary of the birth of DVB-S 4, the first DVB system for satellite broadcasting. The system has been designed for different types of applications: Broadcasting of standard definition and high
4、-definition television (SDTV and HDTV); Interactive Services, including Internet Access, for satellite broadcasting applications (for IRDs Integrated receivers decoders and PC personal computers); Contribution applications, such as digital TV contribution and news gathering; Data content distributio
5、n and Internet trunking. The DVB-S2 standard has been specified around three key concepts: best transmission performance, total flexibility and reasonable receiver complexity. To achieve the best performance-complexity trade-off with an appreciable capacity gain over DVB-S, DVB-S2 benefits from more
6、 recent developments in channel coding and modulation. LDPC, low density parity check codes, combined with QPSK (quadrature phase shift keying), 8-PSK(phase shift keying), 16 amplitude phase shift keying (APSK) and 32-APSK modulations allow the system to work properly on the non-linear satellite cha
7、nnel with a performance approaching the Shannon limit, whilst maintaining a reasonable receiver complexity. The framing structure allows for maximum flexibility in a versatile system and also synchronization in worst case configurations (low signal-to-noise ratio, SNR). For interactive point-to-poin
8、t applications such as Intenet Protocol (IP) unicasting, the adoption of the adaptive coding and modulation (ACM) functionality allows optimization of the transmission parameters for each individual user on a frame-by-frame basis, dependent on path conditions, under closed-loop control via a return
9、channel (connecting the IRD/PC to the DVB-S2 up-link station via terrestrial or satellite links, signaling the IRD/PC reception condition). This results in a further increase in the spectrum utilization efficiency of DVB-S2 over DVB-S, allowing the optimization *This Report is intended as a supporti
10、ng information for the use of Recommendation ITU-R BO.1784 Digital satellite broadcasting system with flexible configuration (television, sound and data). Eventually this Report may become a nucleus for a new handbook on satellite digital broadcasting in the BSS bands above 11.7 GHz. * DVB-S2 is cha
11、racterized by a multitude of configuration parameters (modulation and coding, framing structure, pilots signals) allowing the system to be flexibly used in different operating conditions. 2 Rep. ITU-R BO.2101 of the space segment design, thus making possible a drastic reduction in the cost of satell
12、ite-based IP services. DVB-S2 flexibility allows the system to cope with any existing satellite transponder characteristics, with a large variety of spectrum efficiencies and associated SNR requirements. Furthermore it is designed to handle the variety of advanced audio-video formats defined in DVB.
13、 DVB-S2 accommodates any input stream format, including single or multiple Moving Picture Expert Group Transport Streams (MPEG-TS) (characterized by 188-byte packets), IP as well as asynchronous transfer mode (ATM) packets, continuous bit-streams. Two years since the system publication as a European
14、 Telecommunication Standards Institute (ETSI) standard, a variety of DVB-S2 products is offered by the industry, and services are being launched by several broadcasters around the world. To verify the status of the DVB-S2 technology, the DVB-S2 ad-hoc group has launched a laboratory test campaign, w
15、ith the task to verify the compliancy of available equipment to the standard, and the effective gain in performance with respect to the first generation system DVB-S. The Annexes in this Report describe: a) the results of the Laboratory tests carried out by Rai-CRIT1on equipment provided by seven di
16、fferent equipment manufacturers in June 2006. Furthermore, the first operational contribution network adopting DVB-S2 is described, as set up by EBU (European Broadcasting Union) in the Eurovision contribution network for HDTV transmissions during the 2006 FIFA World Cup. Finally, some references ar
17、e provided for further documents giving useful guidelines for the use of the DVB-S2 system; b) the results of studies carried out by Network Ten Australia, Nine Network Australia and Singtel Optus along with Australian agents for equipment suppliers, who loaned modulators and demodulators, and manuf
18、acturers of DVB-S2 equipment to assess the system performance for broadcast contribution with respect to DVB-SNG modem implementation margin and margin to threshold for each modulation mode. References 1 ETSI. EN 302 307 (V1.1.2) Digital Video Broadcasting (DVB). Second generation framing structure,
19、 channel coding and modulation systems for Broadcasting. Interactive Services, News Gathering and other broadband satellite applications. 2 ETSI. TR 102 376 Digital Video Broadcasting (DVB). User guidelines for the second generation system for Broadcasting. Interactive Services. News Gathering and o
20、ther broadband satellite applications (DVB-S2). 3 Internat. J. on Sat. Com. Networks May-June 2004. Vol. 22, 3, Special issue on The DVB-S2 standard for Broadband Satellite Systems. 4 ETSI. EN 300 421 (V1.1.2) Digital Video Broadcasting (DVB). Framing structure, channel coding and modulation for 11/
21、12 GHz satellite services. 1BERTELLA, A., MIGNONE, V., SACCO, B. and TABONE, M. Technology Innovation Centre of Rai, Corso Giambone, 68, 10135, Torino, Italy (e-mail: . rai.it). Rep. ITU-R BO.2101 3 Annex 1 Rai-CRIT laboratory tests 1 Introduction The DVB ad hoc group responsible for the standardisa
22、tion of DVB-S2 has launched a laboratory test campaign to evaluate the performance of the DVB-S2 equipment. Following this request, the European tests had been carried out by Rai in their CRIT laboratories in the second half of June 2006, with DVB-S2 equipment made available by manufacturers, either
23、 in the form of off-the-shelf products or of laboratory prototypes. The tests carried out at Rai-CRIT laboratories include additive white gaussian noise (AWGN) performance, non-linear channel and phase noise degradation. The results clearly indicate that the equipment performance is in line with the
24、 simulation results presented in the DVB-S2 standard. Implementation loss is in the order of 0.2 dB for QPSK, 0.5 dB for 8-PSK, 0.8 dB for 16-APSK and 1.2 dB for 32-APSK. Single carrier and multicarrier configuration have been implemented and compared to DVB-S equivalent configurations, showing that
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