ITU-R F 750-4-2000 Architectures and Functional Aspects of Radio-Relay Systems for Synchronous Digital Hierarchy (SDH)-Based Networks《基于SDH网的无线中继系统的结构和功能方面》.pdf
《ITU-R F 750-4-2000 Architectures and Functional Aspects of Radio-Relay Systems for Synchronous Digital Hierarchy (SDH)-Based Networks《基于SDH网的无线中继系统的结构和功能方面》.pdf》由会员分享,可在线阅读,更多相关《ITU-R F 750-4-2000 Architectures and Functional Aspects of Radio-Relay Systems for Synchronous Digital Hierarchy (SDH)-Based Networks《基于SDH网的无线中继系统的结构和功能方面》.pdf(78页珍藏版)》请在麦多课文档分享上搜索。
1、 Rec. ITU-R F.750-4 1 RECOMMENDATION ITU-R F.750-4*ARCHITECTURES AND FUNCTIONAL ASPECTS OF RADIO-RELAY SYSTEMS FOR SYNCHRONOUS DIGITAL HIERARCHY (SDH)-BASED NETWORKS (Questions ITU-R 160/9 and ITU-R 211/9) (1992-1994-1995-1997-2000) Rec. ITU-R F.750-4 The ITU Radiocommunication Assembly, considering
2、 a) that ITU-T Recommendation G.707 specifies the bit rates, the multiplexing structure and the detailed mappings associated with the synchronous digital hierarchy (SDH); b) that ITU-T Recommendation G.783 specifies the general characteristics and functions of synchronous multiplexing equipment and
3、ITU-T Recommendation G.784 specifies the management of SDH equipment and networks; c) that ITU-T Recommendations G.703 and G.957 specify the physical parameters of the electrical and optical interfaces of SDH equipment; d) that ITU-T Recommendations G.803 and G.831 specify the architectures and mana
4、gement capabilities of transport networks based on the SDH; e) that among the family of SDH equipment there will be synchronous digital radio-relay systems (SDH-DRRs); f) that there is a need to ensure a complete operational integration of the SDH-DRRs in a synchronous network; g) that Recommendatio
5、n ITU-R F.751 specifies transmission characteristics and performance requirements of SDH digital radio-relay systems, recommends 1 that digital radio-relay systems for the synchronous digital hierarchy should comply with the requirements described in Annex 1. ANNEX 1 Contents 1 Introduction 1.1 Scop
6、e 1.2 Abbreviations 1.3 Definitions 2 Features and layering of the SDH-based networks 2.1 SDH description 2.2 SDH layering 2.2.1 Layering 2.2.2 Layering and the SDH frame structure 2.3 Network node interfaces (NNI) 2.4 Functional blocks of SDH equipment _ *This Recommendation should be brought to th
7、e attention of Radiocommunication Study Group 4 (Working Party 4B) and Telecommunication Standardization Study Groups 13 and 15. 2 Rec. ITU-R F.750-4 3 Application of radio-relay systems to SDH-based networks 3.1 General considerations 3.1.1 Interfaces 3.1.2 Mid-air interconnectivity 3.2 Multiplex a
8、nd regenerator sections 3.3 Functional block diagrams of STM-N digital radio-relay systems 3.3.1 SDH radio synchronous physical interface function (RSPI) 3.3.1.1 Signal flow from B to R 3.3.1.2 Signal flow from R to B 3.3.1.3 Application to the transmission of N times STM-N 3.3.2 Radio protection sw
9、itching (RPS) 3.3.2.1 Signal flow 3.3.2.2 Additional functionality on the signal flow from XT (tributary side) to XL (line side) 3.3.2.3 Additional functionality on the signal flow from XL (line side) to XT (tributary side) 3.3.2.4 Switching initiation criteria 3.3.2.5 Switching performance 3.3.2.6
10、Switch restore 3.3.3 ROHA (Radio OverHead Access) 3.4 Radio terminals and repeaters arrangement of STM-N DRRS 3.4.1 Radio repeater arrangement 3.4.2 Radio protection switching (RPS) and radio terminals arrangement 3.5 Synchronization 4 Function and usage of section overhead (SOH) bytes 4.1 Multiplex
11、 and regenerator section overheads (SOH) 4.2 Media-specific bytes 4.3 Reduced SOH functionality for intra-station sections 5 Radio-relay specific functions 6 STM-0 transmission rate SDH radio-relay systems 6.1 Network interfaces 6.2 Multiplexing schemes 6.3 Multiplex and regenerator radio sections 6
12、.4 Functional block diagrams of STM-0 digital radio-relay systems 6.4.1 Radio-relay STM-0 synchronous physical interface (RR-RSPI) function 6.4.2 Radio-relay STM-0 regenerator section termination (RR-RST) 6.4.3 Radio-relay STM-0 multiplex section termination (RR-MST) 6.4.4 Radio-relay STM-0 multiple
13、x section adaptation (RR-MSA) 6.4.5 STM-0 radio-relay synchronous physical and equipment interface (RR-SPI and RR-EI) 6.5 Radio protection switching 6.6 Section overhead (SOH) for STM-0 DRRS 6.7 Techniques for transport of media-specific functions 7 Operation and maintenance aspects 7.1 Management f
14、unctions 7.2 Maintenance functions 7.2.1 RSPI and RR-RSPI maintenance functions 7.2.2 RPS maintenance functions 7.2.3 ROHA maintenance functions 7.2.4 Performance monitoring functions Appendix 1 RR-EI electrical characteristics Appendix 2 Migration strategy from an existing PDH to SDH-based networks
15、 Rec. ITU-R F.750-4 3 Appendix 3 Examples of practical implementations of the RPS function Appendix 4 Transmission of media-specific functions of STM-0 DRRS through radio complementary section overhead (RCSOH) Appendix 5 Additional primitives for operation and maintenance purpose of RSPI/RR-RSPI, RP
16、S and ROHA functional blocks Appendix 6 Performance event for RSPI, RPS and ROHA functional blocks 1 Introduction 1.1 Scope This Annex defines the architectures and functional aspects of the SDH-DRRS aiming at their complete operational integration in a SDH-based network. The architectures are defin
17、ed in terms of functional blocks without any constraint on physical implementation. 1.2 Abbreviations ADM Add/drop multiplexer ATM Asynchronous transfer mode ATPC Automatic transmitter power control AU Administrative unit AUG Administrative unit group BIP Bit interleaved parity C Container DCC Data
18、communication channel DRRS Digital radio-relay system DXC Digital cross-connect ECC Embedded communication channel FEC Forward error correction EW Early warning FOTS Fibre optics transmission system HO Higher order path HOVC Higher order virtual container HPA Higher order path adaptation HPC Higher
19、order path connection HPT Higher order path termination IOS Intra-office section IOST Intra-office section termination ISI Intra-station interface LOF Loss of frame LOP Loss of pointer LOS Loss of signal LOVC Lower order virtual container 4 Rec. ITU-R F.750-4 LPA Lower order path adaptation LPC Lowe
20、r order path connection LPT Lower order path termination MAF Management application function MCF Message communications function MS Multiplex section MSA Multiplex section adaptation MSOH Multiplex section overhead MSP Multiplex section protection MST Multiplex section termination MUX Multiplexer NE
21、 Network element NEF Network element function NNI Network node interface OAM Operation, administration and maintenance OH Overhead OHA Overhead access OLI Optical line interface OLT Optical line termination OR Optical repeater OSF/MF Operation system function/Mediation function PDH Plesiochronous di
22、gital hierarchy POH Path overhead PPI Plesiochronous physical interface RCSOH Radio complementary section overhead RF Radio frequency RFCOH Radio frame complementary overhead ROHA Radio overhead access RPI Radio physical interface (generic) RPPI Radio plesiochronous physical interface RPS Radio prot
23、ection switching RR-EI Radio-relay equipment interface RR-MSA Multiplex section adaptation for STM-0 radio-relay RR-MST Multiplex section termination for STM-0 radio-relay RRR Radio-relay regenerator RR-RP Radio-relay reference point for STM-0 radio-relay RR-RSPI Radio STM-0 synchronous physical int
24、erface Rec. ITU-R F.750-4 5 RR-RST Regenerator section termination for STM-0 radio-relay RR-SPI Synchronous physical interface for STM-0 radio-relay RRT Radio-relay terminal RS Regenerator section RSOH Regenerator section overhead RSPI Radio synchronous physical interface RST Regenerator section ter
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