CEPT ERC REPORT 71-1999 Sharing Studies between the Unwanted Emissions of MSS Mobile Earth Stations Operating in the Band 1610 - 1626 5 MHz and Radio Navigation - Satellite Service.pdf
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1、STD-CEPT ERC REPORT 71-ENGL L997 W 232b414 OOLb278 982 ERC REPORT 71 European Radiocommunications Committee (ERC) within the European Conference of Postal and Telecommunications Administrations (CEPT) SHARING STUDIES BETWEEN THE UNWANTED EMISSIONS OF MSS MOBILE EARTH STATIONS, OPERATING IN THE BAND
2、1610 - 1626.5 MHz AND RADIO NAVIGATION - SATELLITE SERVICE RECEIVERS OPERATING IN THE BAND 1559 - 1610 MHz Luxembourg, September 1999 Copyright 1999 the European Conference of Postal and Telecommunications Administrations (CEFT) - . STD-CEPT ERC REPORT 72-ENGL 1999 W 232bllItll 002b2BO 530 W ERC REP
3、ORT 71 INDEX TABLE 1 INTRODUCTION 1 2 SYSTEMS PRESENTATION . 2 2.1 MSS SYSTEM 2 2 . 1 . 1 Introduction 2 2.1.2 Globalstar description 2 2.2 RNss SYSTEMS . 3 2.2.1 GLONASS . . . 3 2.2.2 GPS . 4 2.2.3 GNSS 5 SHARING STUDIES SCENARIOS . 5 3.1 INTRODUCTION . . 5 3.2 EN-ROUTE SCENARIO . . 6 3.2.1 Descrip
4、tion . 6 3.2.2 Link budget . 6 3.2.3 Conclusion 7 LANDING AND LANDING APPROACH SCENARIO 8 3.3.1 Description . 8 3.3.2 Link budget . 8 4 CONCLUSION . 11 Annex 1: Extract of TBR041 . 12 Annex 2: Extract of Rec . M.1317 ITU-R 13 Annex 3: Extract of Rec . M.1088 ITU-R 14 Annex 4: Estimation of the impac
5、t of Globalstar MES into GLONASS PAS and SAS receivers on board of an aircraft for the 15 3 3.3 worst case scenario described in the main body of this report STD*CEPT ERC REPORT 71-ENGL 1779 = 232b1i14 001b28L Li77 9 ERC REPORT 71 Page I SHARING STUDIES BETWEEN THE UNWANTED EMISSIONS OF MSS MOBILE E
6、ARTH STATIONS, OPERATING IN THE BAND 1610 - 1626.5 MHz AND RADIO NAVIGATION - SATELLITE SERVICE RECEIVERS OPERATING IN THE BAND 1559 - 1610 MHz 1 INTRODUCTION The purpose of this report is to synthesise the different studies, which were conducted in SE28 on sharing between the unwanted emissions of
7、mobile earth stations of the Mobile-Satellite Service (MSS), operating in 1610 - 1626.5 MHz, in the Earth-to-space direction with a primary status and the Radio Navigation-Satellite Service receivers (RNSS) operating in the band 1559 - 1610 MHz, in the space-to-Earth direction with a primary status.
8、 The Mobile Earth Stations (MES) considered in this report are covered by TBR041. Thus, this excludes aeronautical earth stations. The unwanted emissions of the MES spread into the operational band of RNSS, as shown in Figure 1. If the level of the unwanted emissions is too high, it will cause harmf
9、ul interference into the RNSS receiver. The purpose of these studies was to derive an acceptable value for the unwanted emissions of the MSS MES in the band 1559 - 1610 MHz. 1626.5 1559 1610 RADIONAVIGATION BY SATELLITE -(Space to Earth) Figure 1: Sharing situation in adjacent bands between MSS and
10、RNSS In the studies, particular attention has been paid to the fact that the RNSS systems will be used for safety purposes, when on board an aircraft. 2 SYSTEMS PRESENTATION 2.1 MSS system 2. I. 1 Introduction As we can see in the Figure 2, all the MSS systems operating in the band 1610 - 1626.5 MHz
11、 are implied in the sharing situation. However, to allow all the systems wishing to operate in this band to have an equitable access of the spectrum, taking into account the access techniques, a band segmentation has been decided by CEPT. To summarise the ERC decision, we may say that this band segm
12、entation allows CDMA systems to operate in the lower portion of the band (1610 - 1621.35 MHz) and the TDMA systems to operate in the upper part of the band (1621.35 - 1626.5 MHz). That is why in our simulations, we will use the characteristics of the Globalstar system, which uses the CDMA technique
13、and thus which will be directly adjacent to the RNSS band. 2.1.2 Globalstar description Globalstar system is a satellite-based, wireless telecommunications system designed to provide voice, data, fax, and other telecommunications services to users world-wide. Users of Globalstar will make or receive
14、 calls using hand-held or vehicle mounted terminals similar to todays cellular telephones. It should be noted that most of the terminals will be dual-mode, Le. GSM/Globalstar or IS95/Globalstar. Consequently, when user terminals are within the terrestrial network coverage, they will use the cellular
15、 network, when outside this coverage, they will communicate via satellite. Calls will be relayed through the Globalstar satellite constellation, in a 1414 kilometre altitude orbit, to a ground station, and then through local terrestrial systems to their final destinations. Fifty six Globalstar satel
16、lites will be placed into low earth orbit, 48 of which will be operational, with eight in-orbit spares. The satellites will be placed in eight orbital planes of six satellites each with a circular orbit inclined at 52 degrees. The satellite mass is approximately 450 kilograms, and requires some 1,10
17、0 watts of power for normal operations. The satellites in the first-generation constellation are designed to operate at full performance for a minimum of seven and one half years. Globalstar 0 0 113 minutes of period 0 70“N to 70“s coverage 0 48 LEO satellites + 8 spare in orbit Bent Pipe relay to l
18、ocal gateway 8 planes with 6 satellites each 1414 km altitude, 52“ inclination Multisatellite coverage in temperate zone Figure 2: Typical MSS system It is important to note that the Globalstar MES is covered by TBR041 (see Annex 1). STD=CEPT ERC REPORT 71-ENGL 1997 D 232blllq 001b283 24T W ERC REPO
19、RT 71 Page 3 2.2 RNSS systems 2.2.1 GLONASS The GLONASS Global Navigation Satellite System is designed for position-fixing as well as for velocity and precise time determination for maritime, aeronautical, land and other users. The system service zone provides global continuous and all- weather oper
20、ation. Three-dimensional user co-ordinates and velocity findings are based on measurements propagation time of the GLONASS satellites transmitted signals and of their frequency Doppler shift. GLONASS is one of the elements of the Global Navigation Satellite System (GNSS) and is used for providing sa
21、fety of aircraft flights. RR S4.10 states that safety services require special measures to ensure freedom from harmful interference. GLONASS operates within the Radionavigation-Satellite Service band (1592 - 1610 MHz) on a primary basis in all three Regions. According to the Russian Federation, GLON
22、ASS frequency assignments in the band up to 1610 MHz are completely co-ordinated according to the ITU procedures and based on RR. S4.10, S1.169, S4.5; they require protection from any harmful interference including those produced by unwanted emissions from systems operating in the adjacent frequency
23、 band 1610 - 1626.5 MHz. The GLONASS system consists of three main segments. They are: 0 Space segment Ground control segment User terminals (UT) The GLONASS space segment consists of 24 operating satellites (and some stand-by ones) that are evenly located in three orbital planes with eight satellit
24、es in each. The separation angle of the planes is 120“. The orbit inclination is 64.8“. Its altitude is 19100 km and an orbital period is 11 hours 15 minutes. The navigation service zone is established by transmitting navigation signals in the two RNSS bands, 1559 - 1610 MHz (called L1) and 1215 - 1
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