ITU-R M 1311-1997 Framework for Modularity and Radio Commonality within IMT-2000《IMT-2000内模块性和无线公共性的框架》.pdf
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1、160 1 2 3 4 5 6 7 8 9 10 Rec. ITU-R M.1311 RECOMMENDATION ITU-R M. 13 1 1 FRAMEWORK FOR MODULARITY AND RADIO COMMONALITY WITHIN LMT-2000 (1997) CONTENTS Introduction 1.1 Emerging trends 1.2 1.3 Rationale Scope Related documents Terminology 4.1 Terms and definitions 4.2 Acronyms and abbreviations Rec
2、ommendations Approach to modularity RAN modelling 7.1 Basic IMT-2000 model 7.2 Pre-IMT-2000 systems Objectives of IMT-2000 that impact on modularity 7.2.1 Evolving towards IMT-2000 capabilities 7.2.2 7.2.3 Interworking with IMT-2000 networks Adaptation functionality with IMT-2000 networks 7.3 Satell
3、ite aspects Commonality in packet access mechanisms Identification of common functions in RBCF 9.1 9.2 Common functions in RBCF Guidelines for assessing whether a function can be made common 9.2.1 Radio transport functions 9.2.1.1 Error detection and correction 9.2.1.2 Frames structure adaptation 9.
4、2.1.3 Multiplexing and demultiplexing 9.2.1.4 Source coding 9.2.1.5 Encryption and decryption 9.2.2 Radio resources management functions 9.2.2.1 9.2.2.2 Flexible resource allocation 9.2.2.3 Multibearer capability 9.2.2.4 Admission control 9.2.2.5 Quality control 9.2.3 Mobility-related functions 9.2.
5、3.1 Handover 9.2.3.2 Macrodiversity 9.2.3.3 Paging execution Bearer capacity set up and release Summary and conclusions Annex 1 - ATM service modes of operation Annex 2 -Mobile multimedia services STD=ITU-R RECMN M.33LL-ENGL 3997 m 4855232 0532453 b95 m Rec. ITU-R M.1311 161 1 Introduction Internati
6、onal Mobile Telecomunications-2000 (IMT-2000) are third generation mobile systems which are scheduled to start service around the year 2000 subject to market considerations. They will provide access, by means of one or more radio links, to a wide range of telecommunication services supported by the
7、fixed telecommunication networks (e.g. public switched telephone networklintegrated services digital network (PSTNASDN), and to other services which are specific to mobile users. A range of mobile terminal types is encompassed, linked to terrestrial and/or satellite-based networks, and the terminais
8、 may be designed for mobile or fixed use. Key features of IMT-2ooO are: - - - high service quality, - worldwide roaming, and - high degree of commonality of design worldwide, compatibility of services within IMT-2000 and with the fixed networks, use of a small pocket terminal worldwide. This Recomme
9、ndation forms part of the process of specifying the radio interface(s) of IMT-2000. IMT-2000 is defined by a set of interdependent Recommendations of which this Recommendation is a member. 1.1 Emerging trends One of the most challenging aspects of designing future wireless telecommunications systems
10、 is accurately anticipating what the future market and technological drivers will be. This is made even more difficult by the rapid advances in technology over the last few years and the increasingly sophisticated demands of the end-user. For example, in the next few years wireless networks will lik
11、ely need to support high-speed data, image, andor multimedia in addition to pure voice traffic in order to meet customer demands. Even voice will be coded differently and at different rates for various services and applications. This will create the need for an infrastructure that can support end-us
12、er connections with differing technical systems requirements. As a result of all the factors, the design of any future wireless network must be as flexible as possible. Clearly, a common, flexible infrastructure is needed that can interface with multiple radio interface technologies on the one hand
13、and multiple fixed network technologies on the other. At the time IMT-2000 are introduced, narrow-band voice networks will still predominate in the fixed network, but advanced broadband networks will be a critical component as well. In these broadband networks, asynchronous transfer mode (ATM) techn
14、ology will likely be the switching and transmission technology of choice due to the provision of a common, flexible platform from which many different types of communications (voice, data, image, video, high-quality sound and multimedia) can be served. In addition, there is a worldwide move towards
15、standards which are substantially technology-independent, to maximize their potential application to a number of different environments. A number of emerging trends are having a significant impact upon the design of telecommunications networks and current indications are that this process will accel
16、erate in the future. Work in other standards bodies, particularly regarding broadband technologies, and other major advances in technology, are contributing to this situation. Of particular consequence to network design are: - - - - - - the separation of applications from networks, the convergence o
17、f telecommunications and information technology, the convergence of fixed, mobile and private network capabilities, the emerging importance of personal communications, new advanced distributed processing concepts available for service control, the increasing use of ATM and transmission control proto
18、coVInternet protocol (TCPAP) for the transport of all types of information, the need for substantially “seamless” evolution from one telecommunications technology/standard to a later one, or for evolution within the standard. - STD=ITU-R RECMN M.1311-ENGL 3777 4855232 0532454 521 = 162 Rec. ITU-R M.
19、1311 1.2 Objectives of IMT-2000 that impact on modularity Important design objectives for IMT-2000 are to minimize the number of radio interfaces, to maximize the commonality between them and to be able to flexibly adapt different services onto these radio interface). These design objectives should
20、be met in order to minimize costs and to ease service and network deployment. A number of objectives have been established which place requirements upon IMT-2000 system design and the design of networks implementing IMT-2000. The key aspects for the purpose of this Recommendation are: - to facilitat
21、e evolution to IMT-2000 from existing fixed and mobile systems; - - to provide a common platfodframework for the support of various categories of services; to be adaptable to the service providers and network operators need to differentiate their service offerings; - to facilitate the deployment of
22、the system in a manner consistent with the individual needs of service providers and network operators. Each of these objectives could have a significant impact upon IMT-2000 system, network and protocol design. In short, two major goals to be achieved for the transport mechanisms are: independence
23、from the transmission technology and support of a wide and changing range of services. A modularized functional and physical architecture needs to satisfy the following requirements: - future evolution, - interworking between a variety of access technologies/standards, core transport and core contro
24、l standardshetworks, - technology-independence of telecommunications standards, - - - - backwards compatibility. service differentiation options for operators andor service providers, standards which provide scope, within a generic framework, for proprietary enhancements to meet specific needs, supp
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