ITU-R REPORT M 2078-2006 Estimated spectrum bandwidth requirements for the future development of IMT-2000 and IMT-Advanced《国际移动通信-2000(IMT-2000)和高级国际移动通信未来发展的预估频谱带宽》.pdf
《ITU-R REPORT M 2078-2006 Estimated spectrum bandwidth requirements for the future development of IMT-2000 and IMT-Advanced《国际移动通信-2000(IMT-2000)和高级国际移动通信未来发展的预估频谱带宽》.pdf》由会员分享,可在线阅读,更多相关《ITU-R REPORT M 2078-2006 Estimated spectrum bandwidth requirements for the future development of IMT-2000 and IMT-Advanced《国际移动通信-2000(IMT-2000)和高级国际移动通信未来发展的预估频谱带宽》.pdf(86页珍藏版)》请在麦多课文档分享上搜索。
1、 Rep. ITU-R M.2078 1 REPORT ITU-R M.2078 Estimated spectrum bandwidth requirements for the future development of IMT-2000 and IMT-Advanced (2006) 1 Introduction To achieve the objectives related to the further development of IMT-2000 and IMT-Advanced, additional spectrum bandwidth beyond that identi
2、fied for IMT-2000 at WARC-92 and WRC-2000 may be required. Recommendation ITU-R M.1645 describes in particular the expectations concerning the future development of IMT-2000 and IMT-Advanced: In the framework of technological advances and introduction of IMT-2000 mobile radiocommunications, agreemen
3、t on uniform and co-ordinated strategies and approaches in the ITU has been and will continue to be a prerequisite for worldwide success. A prominent strategic decision by the ITU with regard to the development and introduction of IMT-2000 was the recognition and application of the principle of iden
4、tifying harmonised frequency bands on a global basis with the aid of footnotes in the Radio Regulations. The Radiocommunication Assembly 2003 adopted Recommendation ITU-R M.1645 on the “Framework and overall objectives for the future development of IMT-2000 and systems beyond IMT-2000”. Special cons
5、ideration was given to growing demand for wireless communications, which may result in higher data rates to meet user needs. This Report provides results of technical studies on estimated spectrum requirements for the future development of IMT-2000 and for IMT-Advanced as defined by ITU-R, in accord
6、ance with Resolution 228 (Rev.WRC-03). The Report uses market data in the year 2010 onwards from external organisations outside ITU, which are addressed in Report ITU-R M.2072. The estimated spectrum requirements are calculated with the spectrum calculation methodology defined in Recommendation ITU-
7、R M.1768. In the spectrum calculation for the future development of IMT-2000 and IMT-Advanced, new concepts were introduced, including a mix of services, multiple complementary systems, and Radio Access Techniques Groups (RATG). These were not used in the Recommendation ITU-R M.1390 for the addition
8、al spectrum calculation for IMT-2000. The estimated total spectrum bandwidth requirement for both the RATG1 and RATG2 for the year 2020 is calculated in this Report to be 1 280 MHz (including spectrum already in use, or planned to be used, for RATG1). The calculations developed the estimated spectru
9、m bandwidth requirements ranging from 1 280 MHz to 1 720 MHz (including spectrum already in use, or planned to be used, for RATG1) which represented a lower and higher market setting as developed from the data in Report ITU-R M.2072. It should be noted that this lower figure (1 280 MHz) is higher th
10、an the anticipated requirements for some countries which may have a need for less or no additional spectrum. In addition there are some countries where the requirement is larger than the higher value (1 720 MHz). Rep. ITU-R M.2078 2 1.1 Service-related elements User expectations are continually incr
11、easing with regard to the variety of services and applications. In particular, users will expect a dynamic, continuing stream of new applications, capabilities and services that are ubiquitous and available across a range of devices using a single subscription and a single identity (number or addres
12、s). Versatile communication systems offering customized and ubiquitous services based on diverse individual needs will require flexibility in the technology in order to satisfy multiple demands simultaneously. Multimedia traffic is increasing far more rapidly than speech, and will increasingly domin
13、ate traffic flows. There will be a corresponding change from predominantly circuit-switched to packet-based delivery. This change will provide the user with the ability to more efficiently receive multimedia services, including e-mail, file transfers, messaging and distribution services. These servi
14、ces can be either symmetrical or asymmetrical, and real-time or non real-time. They can consume high bandwidths, resulting in higher data rate requirements in the future. Work has already begun on the convergence of telecommunication services such as digital broadcasting and commercial wireless serv
15、ices. The trend toward integration and convergence can be characterized by: connectivity (provision of a pipe, including intelligence in the network and the terminal); content (information, including push and pull services); commerce (transactions). These trends may be viewed as the integration and
16、convergence of information technology (IT), telecommunications, and content. This will result in new service delivery dynamics and a new paradigm in telecommunications where value added services, such as those which are location dependent, will provide enormous benefits to both the end users and the
17、 service providers. Convergence of IT, media and telecommunications is just beginning in this digital world (e.g., HTML, XML, and IP). Also, TV on mobile is just starting and attracts customer interest even if, for the moment, streaming is not the adequate mode. With the introduction of high-speed m
18、obile data, the market is being redefined to give hope for a new trend of point-to-point relations (text, voice, image, video) and personal empowerment. 2004 can be considered as a turning point in the mobile world as “Year 1 of the Personal and Portable Internet”. “(Reference: ITU Internet Reports
19、2004: The Portable Internet and ITU Internet Reports 2005: The Internet of Things.)” Furthermore, “always on” communications will enable networked and interconnected devices providing relevant content and information whatever the location of the user. Although mobile data applications have brought I
20、nternet-like services to the pockets of many mobile phone users, future systems will not only include personal applications (e.g., cell phones), but also embedded services in inanimate objects that may be pervasive in nature. 1.2 Technology elements Wireless communications comprises a wide range of
21、technologies, services and applications that have come into existence to meet the particular needs of different market sectors and user environments. Different systems can be broadly characterized by: content and services offered; frequency bands of operation; standards defining the systems; data ra
22、tes supported; Rep. ITU-R M.2078 3 bidirectional and unidirectional delivery mechanisms; degree of mobility; regulatory requirements; and cost. Second generation systems were mainly designed for applications such as voice. IMT-2000 and IMT-Advanced will increasingly be designed as a combination of d
23、ifferent radio access techniques to complement each other in an optimum way for different service requirements and radio environments. This will enable a common and flexible service platform for different services and applications. Access to a service or an application may be performed using one sys
24、tem or may be performed using multiple systems simultaneously (e.g. a digital broadcast channel and a return channel using IMT-2000). In the future operators may deploy a mix of technologies that could, at various stages in time and subject to market and regulatory considerations, incorporate cellul
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