ITU-R REPORT M 2038-2004 Technology trends《技术趋势》.pdf
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1、 Rep. ITU-R M.2038 1 REPORT ITU-R M.2038 Technology trends (2004) TABLE OF CONTENTS Page 1 Introduction 2 2 Scope 3 3 Overview of major new technologies. 3 3.1 New radio technologies and impact on spectrum utilization 5 3.1.1 Technologies for improving bandwidth efficiency 5 3.1.2 Technology solutio
2、ns to support traffic asymmetry 7 3.1.3 Advanced system innovations using enhanced TDD. 8 3.1.4 Adaptive antenna concepts and key technical characteristics 9 3.1.5 Multiple-input multiple-output techniques . 10 3.2 Access network and radio interfaces 11 3.2.1 Software-defined radios . 11 3.2.2 High
3、data rate packet nodes (HDRPN) 13 3.2.3 Internet technologies and support of IP applications over mobile systems . 14 3.2.4 IP broadband wireless access. 15 3.2.5 RoF. 16 3.2.6 Multi-hop radio networks. 18 3.2.7 High altitude platform station (HAPS) 19 3.3 Mobile terminals. 21 3.3.1 Terminal archite
4、cture . 21 3.3.2 RF micro-electro-mechanical systems (MEMS) . 21 3.3.3 New innovative user interfaces 22 3.3.4 Reconfigurable processors, terminals and networks 23 4 Conclusions 24 5 Terminology, abbreviations 24 2 Rep. ITU-R M.2038 Page Annex 1 Technologies for improving bandwidth efficiency . 27 A
5、nnex 2 Technology solutions to support traffic asymmetry 44 Annex 3 Advanced system innovation using TDD 50 Annex 4 Adaptive antennas concepts and key technical characteristics . 54 Annex 5 MIMO techniques 62 Annex 6 Software defined radios. 70 Annex 7 High data rate packet nodes (HDRPN) . 83 Annex
6、8 Internet technologies and support of IP applications over mobile systems 87 Annex 9 IP broadband wireless access technologies. 99 Annex 10 Radio on fibre (RoF) . 104 Annex 11 Terminal architecture 107 Annex 12 RF MEMS 110 Annex 13 New innovative user interfaces for future multimedia wireless termi
7、nal devices 113 Annex 14 Reconfigurable processors 118 Annex 15 Multi-hop radio networks 125 1 Introduction Recommendation ITU-R M.1645 defines the framework and overall objectives of future development of IMT-2000 and systems beyond IMT-2000 for the radio access network. In defining the framework a
8、nd overall objectives of the future development of IMT-2000 and systems beyond IMT-2000, the significant technology trends need to be considered. This Report provides further information on many of the technology trends concerning radio access network foreseen at the time of preparation of Recommend
9、ation ITU-R M.1645. Depending on their development, evolution, expected capabilities and deployment cost, each of these technologies may or may not have an impact or be used for the future development of IMT-2000 and systems beyond IMT-2000. It is expected that the research and future development of
10、 IMT-2000 and systems beyond IMT-2000 will consider these technologies and provide guidance on the applicability or influence they might have on the future of IMT-2000 and systems beyond IMT-2000. Technologies described in this Report are collections of possible technology enablers. There is no deci
11、sion implied at this stage about whether those technologies will be adopted for future mobile communication systems, and this Report does not preclude the adoption of any other excellent technologies that exist or appear in the future. Rep. ITU-R M.2038 3 2 Scope This Report provides information on
12、many of the technology trends concerning radio access networks foreseen at the time of preparation of Recommendation ITU-R M.1645. The Report addresses technology topics that appear relevant to some lesser or greater degree to the future development of IMT-2000 and systems beyond IMT-2000. The Repor
13、t considers these topics in three broad categories: technologies which have an impact on spectrum, its utilization and/or efficiency in this context; technologies which relate to access networks and radio interfaces; technologies which relate to mobile terminals. 3 Overview of major new technologies
14、 This section presents technology topics that appear relevant to some greater or lesser degree to the future development of IMT-2000 and systems beyond IMT-2000. Technologies having an impact on spectrum, its utilization and/or efficiency; technologies related to access networks and radio interfaces
15、; and technologies related to user terminals are described in 3.1, 3.2, and 3.3, respectively. Further details are provided in the related Annexes. The demand for mobile multimedia communications has been rapidly increasing. The radio spectrum is, however, a precious and scarce resource. Therefore,
16、novel technologies for efficient spectrum utilization to enhance the capacity of IMT-2000 and systems beyond IMT-2000 are keenly anticipated. Section 3.1 addresses new radio technologies and their impact on spectrum utilization, including technologies for improving spectrum efficiency, those using m
17、ultiple antennas such as adaptive antennas and multiple-input multiple-output (MIMO), and those for handling traffic asymmetry and time division duplex (TDD). Advanced radio resource management (RRM) algorithms and flexible frequency sharing methods are beneficial in maximizing and optimizing the fr
18、equency resource utilization. In addition, antenna and coding technologies such as smart antennas, diversity techniques, coding techniques, space-time coding, and combined technologies improve the radio link quality in multipath Rayleigh fading channels. Furthermore, efficient multiple access scheme
19、s and adaptive modulation improve the bandwidth efficiency of the systems. Adaptive antennas improve the spectral efficiency of a radio channel, and in so doing, greatly increase the capacity and coverage of most radio transmission networks. This technology uses multiple antennas, digital processing
20、 techniques, and complex algorithms to modify the transmitted and received signals at a base station and at a user terminal. In addition, MIMO techniques can provide significant improvements in the radio-link capacity by making positive use of the complex multipath propagation channels found in cert
21、ain terrestrial mobile communications. MIMO techniques are based on establishing several parallel independent communication channels through the same space and frequency channel by using multiple antenna elements at both ends of the link. In broadband multimedia communications, asymmetric traffic is
22、 envisaged to be dominant. Due to uncertainties in future traffic asymmetry, future mobile communication systems should be adaptable to different ratios of asymmetry especially at the personal-area and the user-access levels in order to deliver the offered traffic asymmetry while simultaneously main
23、taining high spectrum efficiency. TDD is one of the techniques suitable to support asymmetric high data rate services while providing flexible network deployment including busy urban hotspot and indoor environments as well as wide area applications. TDD systems do not require a duplex frequency pair
24、 since both the uplink and downlink transmissions are on the same carrier within the same spectrum band. In future mobile 4 Rep. ITU-R M.2038 communication systems, flexibility and integration/convergence will be key factors. In section 3.2, technologies related to IP applications and IP broadband w
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