ITU-R F 634-4-1997 Error Performance Objectives for Real Digital Radio-Relay Links Forming Part of the High-Grade Portion of International Digital Connections at a Bit Rate Below t Dig.pdf
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1、22 Rec. ITU-R F.634-4 RECOMMENDATION ITU-R F.634-4 ERROR PERFORMANCE OBJECTIVES FOR REAL DIGITAL RADIO-RELAY LINKS FORMING PART OF THE HIGH-GRADE PORTION OF INTERNATIONAL DIGITAL CONNECTIONS AT A BIT RATE BELOW THE PRIMARY RATE WITHIN AN INTEGRATED SERVICES DIGITAL NETWORK (Question IT-R 13419) (198
2、6-1 990-199 1-1994-1997) The IT Radiocommunication Assembly, considering a) that the error performance objectives of a high-grade 2 500 km hypothetical reference digital path (HRP) at a bit rate below the primary rate for digital radio-relay systems are given in Recommendation ITU-R F.594, which app
3、lies to N x 64 kbit/s (1 5 Ne 24 ( or e 32, respectively) (see Note 1); b) that network performance objectives for digital sections are given in IT-T Recommendation G.921; cl that real paths which form part of the high-grade portion of an integrated services digital network (ISDN) sometimes differ i
4、n composition from the HRDP (see Recommendation IT-R F.556, Fig. 1). and share radio-relay links shorter than 2 500 km with other digital links; d) that conformity with digital radio performance Recomendations cannot be easily established by direct measurements on real systems due to the seasonal an
5、d annual variations in propagation conditions, and that practical advice on how to apply performance Recommendations is therefore necessary; e) and planning of real radio-relay links forming part of the high-grade portion of an ISDN; that, therefore, it is necessary to give objectives for allowable
6、bit error ratios (BERS) as a guide in the design f) that the Recommendations IT-R F.1092 and ITU-R F.1189, based on ITU-T Recommendation G.826, give error performance objectives for constant bit rate digital paths at or above the primary rate carried by digital radio-relay systems which may form par
7、t of the international and national portions, respectively, of a 27 500 km hypothetical reference path, recommends 1 that error performance should be assessed in terms of the events errored seconds (ES) and severely errored seconds (SES) and the parameters errored second ratio (ESR) and severely err
8、ored second ratio (SESR) as defined in ITU-T Recommendation G.82 1 (see also Recommendation ITU-R F.594); 2 that when establishing real digital radio-relay links with length, L (km), of between 280 km and 2 500 km providing connections at a bit rate below the primary rate and intended to form part o
9、f a high-grade circuit within an ISDN, the following error performance objectives should be respected for each direction of the N x 64 kbit/s (1 IN 2500 km), but the SESR evaluated for the total link length L should not exceed the objective 0.0005 + (L/2500) x 0.00004 in any month. Since the perform
10、ance of digital radio-relay systems is dependent upon fading, it is generally agreed that the behaviour of any section of the HRDP will be statistically independent. If this is assumed, then mathematically the HRDP performance could be determined by the convolution of the probability density functio
11、ns of all sections. This process is however, not a practical one, since the probability density function is not known in sufficient detail. The example given in Fig. 1 illustrates a further important principle coming from the application of ITU-T Recommendation G. 102. This Recommendation draws atte
12、ntion to the need for a margin between network performance objectives (NPO) and equipment design objectives (EDO) which are essentially the performance predictions for each hop (see also $ 2.5.5 of ITU-T Recommendation G.102). In Fig. 1, the predicted outage for the hop (see Recom- mendation ITU-R F
13、.1093) accounts for only a proportion of the objective, 10% is allocated to interference from the fixed-satellite service (FSS), whilst the remainder is used as a margin to take account of inaccuracies in the outage prediction method and for other non-deterministic effects. It is necessary to check
14、that all the objectives of this Recommendation are satisfied during route design including SESR, and ESR. Procedures for predicting performance are described in Recommendation ITU-R F. 1093 and the models generally evaluate the percentage of time that a BER of 1 x will be exceeded during a worst-mon
15、th for multipath fading. Performance measurement has shown that the majority of this time is composed of event durations which are less than 10 s. For this reason, as the worst-case, the predicted multipath outage could be considered as SES rather than unavailable time (see Recommendation ITU-R F.55
16、7 for the definition of unavailable time). 1.2 Network performance objectives (NPOs) and equipment design objectives (EDOs) ITU-T Recommendation G.80 1 describes the application of digital transmission models for the specification and sub-division of transmission parameters. It shows a way in which
17、a national reference model can be used to arrive at NPOs and EDOs for real transmission paths using objectives for hypothetical reference digital connections (HRDXs), hypothetical reference digital links (HRDLs) and HRDSs. This procedure is applicable to all transmission media and thus to radio-rela
18、y systems. COPYRIGHT International Telecommunications Union/ITU RadiocommunicationsLicensed by Information Handling ServicesSTD.ITU-R RECMN F-b34-4-ENGL 1997 m 4855232 0530944 302 m Rec. ITU-R F.634-4 FIGURE 1 Performance degradations due to the FSS Number of severely errored seconds (SES) in any mo
19、nth Network performance objective for hop e.g. 36 SES Total degradation allocated to interference from the FSS (1 0%) I l 1 PLrformance prediction , excluding interference from the FSS 25 Receiver thermal noise power (dB) Increasing interference power (dB) 0634-01 With the aid of HRDS, each administ
20、ration can establish its own reference model tailored to the prevailing national network conditions. It has to be ensured, however, that this model meets the objectives of ITU-T Recommen- dation G.82 1. To obtain a representative network model, the individual network parts should be composed of digi
21、tal sections such that as many as possible of the real links are taken into consideration. A block allowance can then be determined for each model network part, from the chosen arrangement of digital sections and their associated allocation percentages. This block allowance represents a NPO for the
22、network parts concerned and has to be met by real transmission paths. In terms of design, any radio-relay systems employed in these parts must be capable of fulfilling the applicable NPO. In this method, the radio-relay systems to be used (e.g. frequency band, bit rate, etc.) and the maximum possibl
23、e number of hops are defined for each part of the network. Equipment design objectives could then be specified by taking into account environmental effects, equipment ageing, etc. If, in practice, real links are installed which do not exhaust the values given for a particular part of the network mod
24、el - e.g have less hops - it is proposed that the link should still be allocated the full block allowance. The idea is to reduce the constraints at the time of the initial concept of the system. For example, the use of space diversity, use of adaptive time domain equalizers could be reduced, smaller
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