ITU-R F 1705-2005 Analysis and optimization of the error performance of digital fixed wireless systems for the purpose of bringing into service and maintenance《数字固定无线电系统故障性能的分析和优化以.pdf
《ITU-R F 1705-2005 Analysis and optimization of the error performance of digital fixed wireless systems for the purpose of bringing into service and maintenance《数字固定无线电系统故障性能的分析和优化以.pdf》由会员分享,可在线阅读,更多相关《ITU-R F 1705-2005 Analysis and optimization of the error performance of digital fixed wireless systems for the purpose of bringing into service and maintenance《数字固定无线电系统故障性能的分析和优化以.pdf(9页珍藏版)》请在麦多课文档分享上搜索。
1、 Rec. ITU-R F.1705 1 RECOMMENDATION ITU-R F.1705 Analysis and optimization of the error performance of digital fixed wireless systems for the purpose of bringing into service and maintenance (Question ITU-R 235/9) (2005) Scope This Recommendation provides analysis for optimization of the error perfo
2、rmance of digital fixed wireless systems (FWSs) for the purpose of practical maintenance work prior to bringing into service. Annex 1 presents the guidance and systematic methods for the maintenance of both point-to-point (P-P) and point-to-multipoint P-MP systems. The ITU Radiocommunication Assembl
3、y, considering a) that many factors including fading due to multipath effects may distort and attenuate received signals on line-of-sight paths and thereby impair the performance of FWSs; b) that countermeasures such as diversity reception and adaptive equalization are available to reduce the effect
4、s of multipath fading on system performance; c) that methods for the analysis and optimization of the error performance degradation of digital FWSs due to many factors are needed for the bringing into service (BIS) and/or maintenance of FWSs and for radio equipment development; d) that the performan
5、ce limits and the technical guidance on BIS or maintenance for FWSs are given in Recommendations ITU-R F.1330 (Performance limits for bringing into service of the parts of international plesiochronous digital hierarchy and synchronous digital hierarchy paths and sections implemented by digital radio
6、-relay systems) and ITU-R F.1566 (Performance limits for maintenance of digital fixed wireless systems operating in plesiochronous and synchronous digital hierarchy-based international paths and sections), respectively; e) that it is often necessary to optimize the performance of FWSs after they are
7、 installed, in particular during the maintenance work before BIS, recommends 1 that the guidance and the systematic method for the analysis and optimization of digital FWS error performance detailed in Annex 1 should be applied in cases of sub-optimal performance. Annex 1 Analysis and optimization o
8、f the error performance of digital FWSs for the purpose of bringing into service and maintenance 1 Introduction The purpose of this Annex is to provide guidance on the availability of methods for fault analysis and optimization of the performance of digital FWSs. Detailed information on propagation
9、aspects of the design of fixed wireless systems is contained in Recommendation ITU-R P.530 (Propagation data and prediction methods required for the design of terrestrial line-of-sight systems). 2 Rec. ITU-R F.1705 ITU-R error-performance Recommendations (e.g. Recommendation ITU-R F.1668 Error perfo
10、rmance objectives for real digital fixed wireless links used in 27 500 km hypothetical reference paths and connections) place requirements on the design and operation of FWSs to meet the performance objectives of these Recommendations. In view of these requirements, this Recommendation seeks to prov
11、ide guidance for commissioning and operating FWSs in situations where difficulties are experienced due to poor error performance. Guidance on performance limits for systems BIS is given in Recommendation ITU-R F.1330. This Recommendation may also serve to provide maintenance trigger points for opera
12、tional systems. Furthermore it is noted that error cause assessment can basically be triggered by the performance limits given in Recommenda-tion ITU-R F.1566. There has been a great deal of development of systems and techniques to provide high quality FWSs. Measurement technologies and software are
13、 now available for the analysis of digital FWSs in the laboratory and in field operation. In view of these developments it is recommended that where system analysis for fault rectification or optimization for the purpose of meeting the required performance objectives is necessary, then measuring ins
14、truments and software may be applied to achieve the above aims. More detailed general information on FWS operations can be found in the ITU-R Handbook on digital radio-relay systems. 2 Link analysis There are many potential causes of errors on FWSs. The analysis of system errors is thus complex and
15、potentially time-consuming. To progress the analysis and optimization of systems it is necessary to adopt a systematic approach to understanding the nature of the errors and their relationship to the environment in which the FWS operates. In the absence of a systematic approach to error performance
16、analysis, it is easy for the system operator to ascribe all errors to fading and do nothing to rectify the problem. The purpose of this guide is to simplify the process of system analysis and optimization by giving directions that assist in the improvement of system performance. Measurement and anal
17、ysis tools are available to assist this process even in the face of seemingly severe error-performance problems. A basic flow chart is shown in Fig. 1 for assessing the potential causes of system errors, which are observed in P-P FWSs with multi-hop connection. There are many branches in this flow c
18、hart each of which requires some special knowledge about the system and its environment. To gain the necessary knowledge, specific measurements or analyses are required at each branch of Fig. 1. Following such measurements, further application software may be required to assist in evaluating the mea
19、surements and to derive an optimum solution. For FWSs used in the access portion, in particular for P-MP systems operating in different propagation environments, another flow chart in Fig. 2 could be used. The following sections set out guidance for each decision point, the numbering of each section
20、 corresponding to a decision in the flow charts of Figs. 1 and 2. Rec. ITU-R F.1705 3 1705-013.13.23.33.43.54.14.24.34.4433Occasional errors correlatedwith meteorologicalconditions?See Rec. ITU-R P.530Link errorsContinuous errors?Flat fade marginunchanged?Rain fading?Multipath fading?Adjust path or
21、usediversity or equalizerN-hop over-reach?See Rec. ITU-R P.452Other interference?Find interferenceSystem instabilityInterference* orsystem alignment?System alignmentSite intermodulation?Find intermodulationCo-channelover-reach?Change system designAdjacent-channelover-reach?Change system designRadar
22、or other sources?Radar or otherinterferenceYesNoYesNoYesNoYesNoYesNoYesNoYesNoYesNoYesNoYesNoYesNoYesNoFIGURE 1Flow chart for assessing the causes of link errors observedin P-P FWS wih multi-hop connection* Interference may come from services sharing the same band as well as unwanted emissions from
23、other bands.4 Rec. ITU-R F.1705 1705-025.135.25.33.23.44.24.145.44.4Occasional errors correlatedwith meteorologicalconditions?See Rec. ITU-R P.530Link errorsIdentificationof errored hopsContinuous errors?Rain fading?Multipath fading?Adjust path or usediversity or equalizerReflection wave with propog
24、ation path?(building reflection, automobile, ship, etc.)Antenna directionadjustmentOther interference(ISM equipments etc.)Find interferenceSystem instabilitySystem alignment,propagation orinterference*?System alignmentor improvementof installationconditionUnexpected obstructionof propagation?Change
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