CEPT ERC REPORT 20-1993 Compatibility between TFTS (1670-1675 MHz 1800-1850 MHz) and Services in the Same and Adjacent Bands (Montreux October 1993)《相同和相信频带中TFTS(1670-1675 MHz 1800.pdf
《CEPT ERC REPORT 20-1993 Compatibility between TFTS (1670-1675 MHz 1800-1850 MHz) and Services in the Same and Adjacent Bands (Montreux October 1993)《相同和相信频带中TFTS(1670-1675 MHz 1800.pdf》由会员分享,可在线阅读,更多相关《CEPT ERC REPORT 20-1993 Compatibility between TFTS (1670-1675 MHz 1800-1850 MHz) and Services in the Same and Adjacent Bands (Montreux October 1993)《相同和相信频带中TFTS(1670-1675 MHz 1800.pdf(10页珍藏版)》请在麦多课文档分享上搜索。
1、ERC REPORT 20 7 European Radiocornunications Committee (ERC) within the European Conference of Postal and Telecommunications Administrations (CEFT) % . .- . c y-,-. COMPATIBILITY BETWEEN TFTS (1670-1675 MHZ/1800-1805 MHz) AND SERVICES IN THE SAME AND ADJACENT BANDS Montreux, October 1993 STD-CEPT ER
2、C REPORT 20-ENGL 3993 2326434 003535L 9bL I Copyright 1994 the European Conference of Postal and Telecommunications Administrations (CEFT) STD*CEPT ERC REPORT 20-ENGL 1993 W 2326434 0015152 8T i ERC REPORT 20 Page 1 COMPATIBILITY BETWEEN TFTS (1670-1675 MHZ/1800-1805 MHz) AND SERVICES IN THE SAME AN
3、D ADJACENT BANDS 1. 2. 3. 3.1 3.2 3.2.1 INTRODUCTION This report is a summary of the compatibility studies that have been done within the CER-Spectrum Engineering Working Group concerning Terrestrial Flight Telephone System (TFTS) and services in the same and adjacent bands. RADIO ASTRONOMY (1660 -
4、1670 MHz) See ERC Report 11. It should be noted that ETSI decided to increase the maximum EIRF for TPTS from 44 dBm to 49 dBm. METEOROLOGICAL SATELLITE, SPACE - TO - EARTH (1670 - 1710 MHz) Low-earth-orbit The upper portion of the band, from approximately 1695 to 1710 MHz is used for Low-Earth-Orbit
5、 Meteorological satellites. It is necessary to have tighter limits for the spurious emissions than those in the draft ETS. The value should be - 60 dBW / MHZ. Geostationary The geostationary satellites use the lower portion of the band, e.g. 1670 MHz to approximately 1695 MHz. METEOSAT Primary and s
6、econdary data user stations ( PDUS and SDUS) There are approximately 2000 user stations in Europe receiving the frequencies 1691 MHz and 1694,5 MHZ (Meteorological centres, airports, military installations, universities, etc.). The frequency 1695,7 MHz is or will be received by approximately 200 to
7、300 stations which are already in operation or planned to be installed in the future. The conclusion is the same as for the LEO-METSAT, i.e. the spurious level should be reduced to - 60 dBW / MHZ. Data acquisition telecommand and tracking station (DATTS) The DAITS are receiving on frequencies close
8、to 1675 MHz, see below: 1676.180 MHz 1675.281 MHz 1686.833 1675.929 1676.228 1676.328 1676.028 1676.128 Housekeeping, telemetry Data collecting platform Raw Image Telemetry (p) 11 II 11 II 11 II 11 II These frequencies are presently received only in: - Michelstadt (Germany) - Lannion (prance) ERC RE
9、PORT 20 Page 2 land Ah AH=50 AH= 100 O 25 O 200 10 200 150 20 140 110 30 85 65 Additional receiving equipment for these frequencies is planned in: SM 650 - Italy (Fujino) - Ireland (one location) - Germany (Usingen?) The coordination distance is 7 km for frequencies below 1673 MHz. Since it has not
10、been possible to achieve enough information about the filter characteristics, the coordination distance for frequencies above 1673 MHz is 250 km (land) but this distance can be reduced CONSIDERABLY by better information about the specific earth station (including the filter characteristics, antenna
11、pattern, C/N, etc.), by taking into account the terrain, and using the same measures as for Radio Astronomy (see ERC-report 11). The table below indicates how much the coordination distance can be reduced by taking into account the terrain. Coordination distance, (km) due to ducting, 0.1 % of time.
12、3.2.2 4. 4.1 The interference distance due to troposscatter is shorter than the distance above. Goes The frequencies 1687,l MHz and 1694,5 MHz are received in UK and in Ireland the Meteorological Service has the capacity to receive on 1691 MHz. Since the assigned frequency bands are 8.2 MHz, 400 kHz
13、 resp. 30 kHz, it is only spurious emission that can cause interference to these frequencies. In Spain the frequency 1687,l MHz has been received but is at present interrupted, however another GOES satellite will this year operate the service, probably at the same frequency. Since it is only spuriou
14、s that has to be taken into account, the same conclusion as for the METSAT (PDUS and SDUS) stations are valid. FIXED SERVICE In the frequency bands concerned, there exist different kinds of fixed services, both analogue and digital, wide and narrow band. Some administrations use fixed services accor
15、ding to CCIR Rec. 283 or CCIR Rec. 382 and some administrations use fixed services according to other channel arrangements. Analogue, 1 + 1 channels (1672 - 1676 MHz) In UK, the frequency band 1672 - 1676 MHz is used for analogue fixed links with a channel spacing of 0,05 MHz. It is recognised that
16、under some circumstances there could be considerable co-channel interference and some adjacent channel interference into fixed links from TFS and vice versa. Annex 1 identifies some elementary measures that may be taken, whereby any harmful mutual interference can be eliminated. 120 kHz from the car
17、rier, it is necessary to reduce the out-of-band emission to - 68 dBc. STD-CEPT ERC REPORT 20-ENGL 1993 I 23264lit 0015154 b70 I TFTS Spurious Emission Level As ETSI specification With 15 dB ERC REPORT 20 Page 3 Off-axis coordination Max % interference Max. aircraft height distance time for AS traver
18、sing likely to cause interfe- fixed beam rence (in main beam) 0.7 - 8.9 km 3.1% 2100 m 0.1 - 1.5 km 0.55% 400 m 4.2 1807.5 MHz to 1815.5 MHz, requirements for the spurious emissions The fixed links used in the UK, are analogue frequency division multiplex, with channel capacities of 1 + 1, 8, 12, 24
19、, 36 channels. Annex 2 gives the methodology used for determining interference from TFS aircraft station (AS) to a fixed link. The table below summarises the result of the analyses for a busy airport where aircraft arrive every 3 minutes. The results of this study show that with a 15 dB improvement
20、(at a frequency offset of 2.5 MHz) in the TFS AS spurious emission level, a significant increase of protection is afforded to the adjacent band fixed links. The coordination distance is not unrealistic and when combined with information on the location and direction of peak antenna gain of the fixed
21、 links, incompatibility problems will be minimised. 4.3 CCIR recommendation 283,2 x 8 Mbis The “S aircraft station can cause interference to fixed service on a height of 500 meter, i.e. when the aircraft is approximately 8 km from the airport. If there is a TFS ground station close to the airport th
22、e transmitter power may be reduced and the interference distance will then be reduced. In the worst case, Le. the mainlobe is pointing in the direction of the airport, the coordination distance is approximately 25 km 5. MOBILE SERVICE 5.1 DCS1800 In the band 1710 - 1785 MHz, DCS 1800 base stations S
23、) may receive interference from TFTS aircraft stations (AS) since it is likely that both systems could be operated physically close to each other. The most common scenario would be where a DCS 1800 BS is sited near or at an airport i.e. close to TFS AS. In the analysis it was assumed that the minimu
24、m separation distance between the TFTS AS and DCS 1800 BS would be 100 m. The existing radio parameter specifications were used. It is necessary to reduce the spurious emissions for the TFTS AS to - 62 dBW / 30 kHi. However, part of the additional attenuation will be achieved by the diplexor. In the
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