ITU-R F 1334-1997 Protection Criteria for Systems in the Fixed Service Sharing the Same Frequency Bands in the 1 to 3 GHz Range with the Land Mobile Service《在1-3GHz频段与陆地移动业务频率共享的固定.pdf
《ITU-R F 1334-1997 Protection Criteria for Systems in the Fixed Service Sharing the Same Frequency Bands in the 1 to 3 GHz Range with the Land Mobile Service《在1-3GHz频段与陆地移动业务频率共享的固定.pdf》由会员分享,可在线阅读,更多相关《ITU-R F 1334-1997 Protection Criteria for Systems in the Fixed Service Sharing the Same Frequency Bands in the 1 to 3 GHz Range with the Land Mobile Service《在1-3GHz频段与陆地移动业务频率共享的固定.pdf(10页珍藏版)》请在麦多课文档分享上搜索。
1、Rec. ITU-R F.1334 1RECOMMENDATION ITU-R F.1334*PROTECTION CRITERIA FOR SYSTEMS IN THE FIXED SERVICE SHARINGTHE SAME FREQUENCY BANDS IN THE 1 TO 3 GHz RANGEWITH THE LAND MOBILE SERVICE(Question ITU-R 133/9)(1997)Rec. ITU-R F.1334The ITU Radiocommunication Assembly,consideringa) that systems in the fi
2、xed service (FS) and land mobile service (LMS) share many frequency bands between1 and 3 GHz;b) that many systems in the FS are operational or are planned for operation in these shared bands, both analogueand digital for point-to-point (P-P) and point-to-multipoint (P-MP) applications;c) that it is
3、necessary to specify the maximum allowable interference into the FS;d) that reasonable geographic separations are necessary to permit sharing of overlapping frequency assignments;e) that geographic separations are necessary in certain cases to permit sharing of orthogonally polarizedassignments;f) t
4、hat the typical receiver thermal noise of systems in the FS as given in Recommendation ITU-R F.758 is of theorder of 140 dB(W/MHz),recommends1 that the protection criteria for the FS sharing frequency bands between 1 and 3 GHz with the LMS beestablished as follows (see Note 1): the maximum aggregate
5、 interference from the LMS including base stations and mobile stations should be such thatthe degradation to a FS receiver threshold does not exceed 1 dB under normal propagation conditions;2 that Annex 1 should be referred to for the additional information relating to the protection of systems in t
6、he FSsharing frequency bands between 1 and 3 GHz with the LMS.NOTE 1 In certain situations of unfavourable propagation conditions, it may become necessary to establish anadditional criterion to avoid excessive degradation to a FS threshold (for example, degradation exceeding 10 dB) for asmall time p
7、ercentage. The level of such degradation and the time percentage should be agreed by the administrationsconcerned.NOTE 2 Further study should be continued to improve this Recommendation in close collaboration with Radiocom-munication Study Group 8 (Working Party 8A). Administrations and other organi
8、zations are requested to submitcontributions to the ITU-R._*This Recommendation should be brought to the attention of Radiocommunication Study Group 3 (Working Parties 3K and 3M)and Radiocommunication Study Group 8 (Working Party 8A and Task Group 8/1).2 Rec. ITU-R F.1334ANNEX 1Considerations for th
9、e protection of the FS sharingfrequency bands between 1 and 3 GHz with the LMS1 IntroductionThe World Administrative Radio Conference for Dealing with Frequency Allocations in Certain Parts of the Spectrum(Malaga-Torremolinos, 1992) (WARC-92) made many amendments and additions to the Table of Freque
10、ncyAllocations. In the case of future public land mobile telecommunication systems (FPLMTS), identification of thebands 1 885-2 025 MHz and 2 110-2 200 MHz was made by way of Footnote 746A (S5.388) of Radio Regulations.These bands are already extensively used by radio-relay systems. Now that WARC-92
11、 decisions are known, sharingstudies of affected services should continue.Resolution 113 (WARC-92) specifically addresses sharing and adjustments to the FS as consequences of changes tofrequency allocations in the range 1-3 GHz.Fixed radio-relay systems operating in the 1-3 GHz band form a vital par
12、t of the telecommunications service of manyadministrations. Thus, the study of spectrum sharing with other services must include due consideration for maintainingthe high availability and performance standards required for telecommunications services.This Annex examines, by way of example, the feasi
13、bility of frequency sharing between point-to-point radio-relaysystems in the FS and systems in the LMS.The approach adopted in this Annex recognizes that: the formulation of sharing guidelines for both the fixed systems and land-mobile systems should reflect thecharacteristics of, and performance ob
14、jectives for the respective systems; a study based on the consideration of several spectrum sharing examples can provide a broader understanding of thetechnical issues involved, and the mutual interference between the FS and land-mobile systems may be meaningfully described on a statisticalbasis, an
15、d consequently by applying a statistical approach to this spectrum sharing question guidelines can beformulated which will properly reflect the performance under sharing. The actual levels of interference may alsoneed to be considered deterministically for each situation.Systems in the mobile servic
16、e (MS) encompass a number of operating environments. They include, for example,personal, mobile and satellite communications. In this Annex, the mobile (R1 interface) segment is concerned with thecommunications services between vehicles and base stations. The personal (R2 interface) segment postulat
17、es the use ofpersonal communications in a pedestrian environment indoors and outdoors. The satellite segment may be concernedwith services such as paging functions, linking remote base stations or providing temporary system extension. Thissharing study is restricted to the R1 and R2 interfaces of sy
18、stems in the LMS.Rec. ITU-R F.1334 32 Characteristics of FS and MS2.1 Fixed systemsExamples of the technical characteristics of some radio-relay systems are given in Table 1.TABLE 1aExample 1-3 GHz digital radio-relay systemsTABLE 1bExample 1-3 GHz P-MP systemsOther characteristics relevant to the o
19、peration of fixed systems include: the nature of the propagation, which is generally characterized by distinct non-fading and fading periods, wherefading occurs as the result of anomalous propagation conditions (often late at night and/or during the early hours ofthe morning) including possible obst
20、ruction effects; the operating flat fade margin, which is typically 30-40 dB; the primary mechanism of errors. For low capacity systems (under 10 Mbit/s) this is signal level fading (rather thandispersive effects), and the performance requirements, which are described in Recommendations ITU-R F.594,
21、 ITU-R F.634, ITU-R F.696,ITU-R F.697, ITU-R F.1092 and ITU-R F.1189.Modulation O-QPSK 64-QAMAntenna gain, GFS(dBi) 33 33Transmit power, PFS(dBW) 7 1e.i.r.p. (dBW) 40 34Noise floor (dBW) 125 130Bandwidth, Bf(MHz) 29 10Maximum I (I/N = 6) (dBW) 131 136O-QPSK: quadrature phase shift keying64-QAM: quad
22、rature amplitude modulation.Parameter Central station OutstationAntenna type Omni/sectoral Dish/hornAntenna gain (dBi) 10/13 20 (analogue)27 (digital)e.i.r.p. (maximum) (dBW): analogue digital12242134Noise figure (dB) 3.5 3.5Feeder loss (dB) 2 2IF bandwidth (MHz) 3.5 3.5Maximum permissible long-term
23、 interferencepower (20% time): total (dBW) (dB(W/4 kHz) (dB(W/MHz)1421701471421701474 Rec. ITU-R F.13342.2 Systems in the LMSThe assumed technical characteristics of the LMS R1 and R2 interfaces are given in Table 2.TABLE 2Sharing parameters in the LMSThe principal special consideration for the FPLM
24、TS is the mobile nature of the personal stations. It is to be expected thatthe operation of personal stations of FPLMTS will be desired almost anywhere. Spectrum sharing by both the FS andFPLMTS should be carefully coordinated. Possible sharing features of FPLMTS include frequency agility that could
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