ITU-R REPORT F 2058-2006 Design techniques applicable to broadband fixed wireless access systems conveying Internet protocol packets or asynchronous transfer mode cells《适用于传送网络协议数据.pdf
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1、 Rep. ITU-R F.2058 1 REPORT ITU-R F.2058 Design techniques applicable to broadband fixed wireless access systems conveying Internet protocol packets or asynchronous transfer mode cells (2006) TABLE OF CONTENTS Page 1 Introduction 2 2 Types of FWA systems conveying IP packets or ATM cells in terms of
2、 radio channel utilization 2 3 Scope 3 4 References 3 5 Abbreviations . 5 6 Technical characteristics addressed 8 6.1 Modulation and multiple access method 8 6.2 CoS and QoS. 9 6.3 Transfer delay characteristics . 9 6.4 VoIP technique . 10 6.5 Efficient spectrum utilization technique. 10 6.6 Error c
3、orrection techniques in an ATM-based FWA system . 10 ANNEX 1 Mechanism to ensure QoS or CoS in the broadband FWA systems 11 ANNEX 2 Example calculations of average access protocol delay and delay variation of CSMA/CA-based FWA 29 ANNEX 3 Example calculations of additional waiting time in multiple Vo
4、IP flow situations for TDMA-based FWA 34 ANNEX 4 Example calculations of QoS class 0 network delay 39 ANNEX 5 Technical characteristics of broadband FWA systems to support VoIP technique. 43 ANNEX 6 Techniques to improve spectrum utilization efficiency 50 ANNEX 7 Error correction techniques in an AT
5、M-based FWA system 53 2 Rep. ITU-R F.2058 1 Introduction There is an urgent need for broadband services in the telecommunication market. Users needs are not uniform but diversified in terms of bit rate and service quality. Internet protocol (IP) and asynchronous transfer mode (ATM) are becoming basi
6、c signal transfer methods in recent wired networks in order to cope with such multimedia service demands. This trend also affects the fixed wireless systems used in the access networks. It is generally understood that IP-based and ATM-based fixed wireless access (FWA) systems should desirably have s
7、imilar quality of service (QoS) or class of service (CoS) control capability to that of wired systems. Both QoS and CoS are defined as classified categories prescribed by transmission performance parameters. QoS is used for classes of the transmission performance which satisfy users quality requirem
8、ents. On the other hand, CoS is generally used for the classes of similar performance which are presented to users as a guideline by a network administrator. Furthermore, FWA systems are required to achieve objectives of IP or ATM performance parameters in the wired network adopted in ITU-T Recommen
9、dations I.356 and Y.1541. For this purpose, PHY layer parameters of FWA systems must be designed to meet these objectives of IP or ATM performance parameters. Relations between PHY layer parameters and IP layer performance parameters, such as IPTD are given in ITU-T Recommendations Y.1540 and Y.1541
10、. Relations between PHY layer parameters and ATM layer performance parameters, such as the cell loss ratio (CLR) or cell error ratio (CER) are given in ITU-T Recommendation I.356. ATM-based FWA systems should also satisfy the (SESR) objective specified in Recommendation ITU-R F.1668 (performance and
11、 availability requirements and objectives for FWA systems connected to PSTN are described in Recommendation ITU-R F.1400). Both IP and ATM are packet or cell-based technologies operating at a high clock frequency where IP packet or ATM cell transmission may affect the system design and utilization e
12、fficiency of the radio-frequency spectrum. Such requirements will lead to design approaches which differ from existing voice-based FWA. Also necessary technologies for IP packets or ATM cells in FWA applications are, in many respects, common to those used in radio local area networks (RLANs). The pu
13、rpose of this Report is to provide example design techniques and methods addressing various aspects of FWA systems carrying IP or ATM data. 2 Types of FWA systems conveying IP packets or ATM cells in terms of radio channel utilization Types of FWA systems conveying IP packets or ATM cells in terms o
14、f radio channel utilization can be categorized as follows. The first type is to allocate an exclusive radio channel to each subscriber permanently or during a call retains. The typical system is point-to-point (P-P) or point-to-multipoint (P-MP) broadband wireless access systems generally using freq
15、uency bands above 20 GHz. This type of system is usually used for the leased line access services. The second type is to allocate a radio resource when a call attempt occurs. The typical system is an FWA system providing PSTN services for mass users. Some of the systems use the technologies of mobil
16、e wireless access systems in order to reduce the cost of equipment. The third type is to allocate a radio channel only when traffic such as IP packets or ATM cells occurs. This type achieves more efficient frequency usage compared with the first types especially for P-MP topology, provided that over
17、head bits are not too numerous. MP-MP topology is also suitable in this type of FWA. Rep. ITU-R F.2058 3 The typical systems for the second type include those based on RLANs. FWA systems based on RLAN technologies may also have an advantage of reduce equipment costs. A feature of the third type may
18、be explained as follows in case of ATM cell transmission. There are two cases for FWA systems conveying ATM cells: a) FWA transmits ATM cells transparently without identifying any information contained in a cell; b) FWA identifies information contained in the header portion of an ATM cell and thus c
19、ontrols the treatment of each cell within the radio section. In case a), the system design method of FWA should basically be identical to systems intended for SDH signal transmission. This corresponds to the first type of FWA systems described above. On the other hand, in case b), there can be a dif
20、ferent approach in transmitting ATM cells over the radio section in order to efficiently utilize radio-frequency spectrum. Several RLANs, used mostly for nomadic wireless access (NWA) purposes, or other types of wireless access systems using IP packet or ATM cell over the radio are realized as comme
21、rcial products or examined in standardization bodies of forums. Standards for wireless access systems, both fixed and nomadic, are given in Recommendation ITU-R F.757 and Recommendation ITU-R M.1450. 3 Scope This Report provides various design techniques applicable to FWA systems based on RLAN or NW
22、A system technologies, which provide IP packets or ATM cell transport with a rate of more than several Mbit/s targeted for ubiquitous penetration. The design solutions presented in the Annexes to this Report are suggested as one means towards satisfying the particular MAC layer standards set forth i
23、n ITU-T Recommendations concerning IP and ATM transmission. It should also be noted that the material presented in Annex 6 is not applicable to IP traffic since the idle cell notion is very specific to ATM. The FWA discussed in this Report is focused primarily on P-MP applications wherein the capaci
24、ty of one radio carrier provided by a base station will be shared by several or more terminal stations, although some of the techniques described in the Annexes to this Report are applicable also to P-P and MP-MP applications. 4 References ITU-R Recommendations Recommendation ITU-R F.757 Basic syste
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