ITU-R S 1878-2010 Multi-carrier based transmission techniques for satellite systems《卫星系统用基于多载波的传输技术》.pdf
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1、 Recommendation ITU-R S.1878(12/2010)Multi-carrier based transmissiontechniques for satellite systemsS SeriesFixed-satellite servicesii Rec. ITU-R S.1878 Foreword The role of the Radiocommunication Sector is to ensure the rational, equitable, efficient and economical use of the radio-frequency spect
2、rum by all radiocommunication services, including satellite services, and carry out studies without limit of frequency range on the basis of which Recommendations are adopted. The regulatory and policy functions of the Radiocommunication Sector are performed by World and Regional Radiocommunication
3、Conferences and Radiocommunication Assemblies supported by Study Groups. Policy on Intellectual Property Right (IPR) ITU-R policy on IPR is described in the Common Patent Policy for ITU-T/ITU-R/ISO/IEC referenced in Annex 1 of Resolution ITU-R 1. Forms to be used for the submission of patent stateme
4、nts and licensing declarations by patent holders are available from http:/www.itu.int/ITU-R/go/patents/en where the Guidelines for Implementation of the Common Patent Policy for ITU-T/ITU-R/ISO/IEC and the ITU-R patent information database can also be found. Series of ITU-R Recommendations (Also ava
5、ilable online at http:/www.itu.int/publ/R-REC/en) Series Title BO Satellite delivery BR Recording for production, archival and play-out; film for television BS Broadcasting service (sound) BT Broadcasting service (television) F Fixed service M Mobile, radiodetermination, amateur and related satellit
6、e services P Radiowave propagation RA Radio astronomy RS Remote sensing systems S Fixed-satellite service SA Space applications and meteorology SF Frequency sharing and coordination between fixed-satellite and fixed service systems SM Spectrum management SNG Satellite news gathering TF Time signals
7、and frequency standards emissions V Vocabulary and related subjects Note: This ITU-R Recommendation was approved in English under the procedure detailed in Resolution ITU-R 1. Electronic Publication Geneva, 2010 ITU 2010 All rights reserved. No part of this publication may be reproduced, by any mean
8、s whatsoever, without written permission of ITU. Rec. ITU-R S.1878 1 RECOMMENDATION ITU-R S.1878 Multi-carrier based transmission techniques for satellite systems (Questions ITU-R 46-3/4 and ITU-R 73-2/4) (2010) Scope For the efficient use of frequency resources and high-speed data services, multi-c
9、arrier based transmission techniques are considered as promising technologies for providing future radiocommunication services. This Recommendation presents an overview of multi-carrier based transmission techniques over satellite links, briefly giving guidance for the utilization of multi-carrier c
10、ode division multiple access (MC-CDMA) and carrier interferometry orthogonal frequency division multiplexing (CI-OFDM) schemes for satellite radiocommunication systems. The ITU Radiocommunication Assembly, considering a) that satellites in the fixed-satellite service (FSS) and mobile-satellite servi
11、ce (MSS) are simultaneously used by many earth stations at different locations; b) that multicarrier-based multiple-access schemes such as orthogonal frequency division multiplexing frequency division multiple-access (OFDM-FDMA or OFDMA), MC-CDMA and multi-frequency TDMA (MF-TDMA) have been adopted
12、or are being considered to be adopted in many terrestrial and satellite system standards for future implementation; c) that although OFDM-type systems are largely used in terrestrial networks as a means for providing good spectral and energy efficiency over frequency selective channels, OFDM has hig
13、h peak to average power ratio (PAPR), which is problematic for the high power amplifier (HPA) in the satellite; d) that there is a need for a high degree of freedom especially for bursty (i.e. non-continuous and variable rate) and high-rate packet transmissions; e) that, in order to ensure the effic
14、ient use of frequency spectrum and orbits, it may be desirable to determine the optimum multiple-access characteristics; f) that the transmission characteristics of multiple-access systems, especially multi-carrier-based multiple-access systems, may be of importance in their interaction with one ano
15、ther, noting a) that Recommendation ITU-R S.1709 specifies MF-TDMA as an inbound traffic access format for global broadband satellite systems; b) that Recommendation ITU-R BO.1130 specifies coded OFDM (COFDM) as one of transmission techniques used for satellite digital sound broadcasting services to
16、 vehicular, portable and fixed receivers in the frequency range 1 400-2 700 MHz; c) that Report ITU-R S.2173 provides background material on multi-carrier transmissions over satellite links, including basic operational principles, application scenarios and the performance of multi-carrier-based tran
17、smissions over satellite links, analysed through computer simulation, 2 Rec. ITU-R S.1878 recommends 1 that Annex 1 should be used as guidance for planning the utilization of a CI-OFDM scheme for multi-carrier satellite radiocommunication systems; 2 that Annex 2 should be used as guidance for planni
18、ng the utilization of a MC-CDMA scheme for satellite radiocommunication systems; 3 that the subject techniques may even be used in combination provided that no basic incompatibility exists among them. Annex 1 CI-OFDM transmission in satellite radiocommunication systems 1 Introduction This Annex pres
19、ents a satellite radiocommunication system that makes use of CI-OFDM transmissions and its performance when compared with satellite radiocommunication systems using single-carrier and OFDM transmissions. 2 System model OFDM is a multi-carrier technology that is used to overcome the frequency selecti
20、ve nature of terrestrial radiocommunications environments. Apart from this advantage, there are several other advantages of OFDM that could be exploited by a satellite radiocommunication system. These advantages are listed in 5.2 of Report ITU-R S.2173. However, as mentioned in Report ITU-R S.2173,
21、OFDM has high peak to average power ratio (PAPR), which is problematic for the high power amplifier (HPA) in the satellite. CI-OFDM is a type of sub-carrier scrambling technology that can be implemented for an OFDM system at the cost of an additional fast Fourier transform (FFT) module at the transm
22、itter and receiver end of a radiocommunication system, in order to reduce the PAPR of OFDM signals. The detailed operational principles of CI-OFDM are well described in 6.3 of Report ITU-R S.2173. Figure 1 shows a satellite system employing CI-OFDM transmissions. The data source passes on vector mes
23、sage-words to an encoder, whose rate is set by the adaptive coding and modulation (ACM) controller. The encoded data is then passed on to a symbol mapper, whose output is passed to a multi-carrier signal generator (MSG). The MSG is composed of two blocks for simulation purposes: an OFDM signal gener
24、ator and a CI-OFDM signal generator. Only one MSG block is used during simulation. Each MSG generates a multi-carrier symbol from a collection of N symbols; where N is the number of subcarriers used for transmission. The output of the MSG is passed on to a HPA. The HPA output is then passed on to an
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