ITU-R REPORT S 2150-2009 An interference reduction technique by adaptive-array earth station antennas for sharing between the fixed-satellite service and fixed mobile services《卫星固定.pdf
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1、 Report ITU-R S.2150(09/2009)An interference reduction technique by adaptive-array earth station antennas for sharing between the fixed-satellite service and fixed/mobile services S SeriesFixed-satellite serviceRep. ITU-R S.2150 ii Foreword The role of the Radiocommunication Sector is to ensure the
2、rational, equitable, efficient and economical use of the radio-frequency spectrum 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 Rad
3、iocommunication Sector are performed by World and Regional Radiocommunication 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
4、1 of Resolution ITU-R 1. Forms to be used for the submission of patent statements 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 inf
5、ormation database can also be found. Series of ITU-R Reports (Also available online at http:/www.itu.int/publ/R-REP/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 Fi
6、xed service M Mobile, radiodetermination, amateur and related satellite 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 system
7、s SM Spectrum management Note: This ITU-R Report was approved in English by the Study Group 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 means whatsoever, without written pe
8、rmission of ITU. Rep. ITU-R S.2150 1REPORT ITU-R S.2150 An interference reduction technique by adaptive-array earth station antennas for sharing between the fixed-satellite service and fixed/mobile services (2009) Scope This Report describes an interference reduction technique using adaptive-array e
9、arth station antennas for sharing between the FSS and fixed/mobile services. This technique may be used to improve FSS link performance when sharing the same frequency band with other services. The Report contains the theoretical analysis and field test results as well as observations to provide gui
10、delines for the system design when employing the interference reduction technique. TABLE OF CONTENTS Page 1 Introduction 2 2 Overview of interference reduction technique using adaptive-array antennas . 3 3 Theoretical analysis on the performance of interference reduction . 4 4 Implementation of prot
11、otype interference reduction system 6 5 Field trials . 8 5.1 Overview of field trials . 8 5.2 Measurement of delay profiles . 11 5.3 Performance of interference reduction technique . 12 6 Summary . 17 7 Conclusion 20 7.1 Comparison with other interference reduction techniques . 20 7.2 Practicability
12、 of the interference reduction technique presented in this Report . 20 Rep. ITU-R S.2150 21 Introduction As one of the possible measures to improve link performance of the fixed-satellite service (FSS) systems, an interference reduction technique by adaptive-array antenna would be considered. In thi
13、s technique, as shown in Fig. 1, interference signals from stations of fixed/mobile services (i.e. base/fixed stations or mobile stations) are reduced at a FSS earth station antenna by digitally processing signals received at a main earth station antenna (denoted as “main antenna” hereafter) and sub
14、-antennas aligned around the main antenna. Each sub-antenna has the directivity in the horizontal plane and covers a part of the direction that interference signals arrive. FIGURE 1 Overall concept for interference reduction Report 2150-01Interferences from base/fixed stationsDesired signals in FSSd
15、own link (easily affectedby interferences)Earth stationantennaInterference signals frommobile stationsSub antennasIn this Report, the overview of interference reduction technique using adaptive-array antennas is presented firstly. Next, the theoretical analysis and implementation of prototype interf
16、erence reduction is discussed. Subsequently, test results of field trials conducted in a satellite teleport are presented. Finally, consideration of test results and system design guidelines are provided. It should be noted that this Report addresses only the technical aspects of the presented inter
17、ference reduction technique. As with any technology or interference reduction technique, there will be tradeoffs associated with balancing the complexity and cost of implementing the technique with the benefit derived from its implementation. Analysis of such tradeoffs is beyond the scope of this Re
18、port as such tradeoffs will be unique to every situation. The reader is advised that cost/benefit considerations are very important and should be carefully weighed when considering the possible implementation of such technologies. Rep. ITU-R S.2150 32 Overview of interference reduction technique usi
19、ng adaptive-array antennas Figure 2 depicts the principle of the interference reduction technique using adaptive-array antennas. A number of sub-antennas (N sub-antennas) are aligned around the main antenna. The number of interferers is assumed to be M in this case. At the main antenna, the interfer
20、ing signals (J01(t) to J0M(t): either from mobile stations or base/ fixed stations) are received in addition to the desired signal from a satellite s(t). The signal received at the main antenna, x0(t), is expressed by: )()()()(0010tJtJtstxM+= (1) At the sub-antennas (No. 1 to No. N), only the interf
21、ering signals are received and no desired signal is received since the antenna gain of sub-antennas towards the satellite is too low to sense the very weak signal from the satellite. As a result, the signal received at the k-th sub-antenna xk(t) is expressed by: )()()(1tJtJtxkMkk+= (2) Aggregated si
22、gnals received at the main and sub-antennas (= x0(t) + x1(t) + . + xN(t) are digitally processed by the “interference signal processor” (ISP) in Fig. 2. FIGURE 2 Principle of the interference reduction technique Report 2150-02D/CDesired signalInterferer No. 1Main antennaSub antenna No. 1Interference
23、signal processorDesiredsignal afterinterferencecancelledxout()tWeight calculationx0()tD/CLNAD/CLNASub antenna No. Nx1()tW1xN()tWNJMN()tJM1()tJ11()tJ1N()tJ0N()tJ01()ts()tInterferer No. MLNA: Low noise amplifierD/C: Down converterLNARep. ITU-R S.2150 4Consequently, the following signal is produced as
24、a desired signal after interference reduction: =+=Nkkkouttxwtxtx10)()()( (3) where wkis a weighting factor (or “weight”), that is adaptively computed by the interference signal processor, to multiply to the received signal at the k-th sub-antenna in order to minimize interference signals. 3 Theoreti
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