ITU-R F 1612-2003 Interference evaluation of the fixed service using high altitude platform stations to protect the radio astronomy service from uplink transmission in high altitudHz b.pdf
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1、 Rec. ITU-R F.1612 1 RECOMMENDATION ITU-R F.1612 Interference evaluation of the fixed service using high altitude platform stations to protect the radio astronomy service from uplink transmission in high altitude platform station systems in the 31.3-31.8 GHz band (Question ITU-R 230/9) (2003) The IT
2、U Radiocommunication Assembly, considering a) that new technology utilizing high altitude platform stations (HAPS) in the stratosphere is being developed; b) that WRC-97 made provisions for operation of HAPS within the fixed service in the bands 47.2-47.5 GHz and 47.9-48.2 GHz; c) that since the 47
3、GHz bands are more susceptible to rain attenuation in those countries listed in Nos. 5.537A and 5.543A of the Radio Regulations (RR), the frequency range 18-32 GHz has been studied for possible identification of additional spectrum in ITU-R; d) that WRC-2000 made a provision for the use of HAPS in t
4、he fixed service in the bands 27.5-28.35 GHz and 31.0-31.3 GHz in certain countries on a non-harmful, non-protection basis in order to address issues of rain attenuation associated with the 47 GHz bands (RR Nos. 5.537A and 5.543A). Until WRC-03, since the 31.3-31.8 GHz band is allocated to the radio
5、 astronomy service (RAS), Earth exploration-satellite service (EESS) (passive) and space research service (passive), use of the band 31.0-31.3 GHz is limited to the lower half of the band (31.0-31.15 GHz); e) that Resolution 122 (Rev.WRC-2000) requests urgent studies on technical, sharing and regula
6、tory issues in order to determine criteria for the operation of HAPS in the bands referred to in considering d) above; f) that it is necessary to protect appropriately the RAS, EESS (passive) and space research service (passive), taking into account RR No. 5.340 and the interference criteria given i
7、n Recommendations ITU-R SA.1029 and ITU-R RA.769, recommends 1 that the methodology in Annexes 1, 2 and 3 should be used for the evaluation of interference by HAPS uplinks to the RAS in the frequency band 31.3-31.8 GHz; 2 that the location of HAPS airships and HAPS ground stations relative to the RA
8、S station should be chosen to protect the RAS from unwanted emissions in the HAPS uplink in the 31.3-31.8 GHz band; 2 Rec. ITU-R F.1612 3 that in order to protect the RAS station from unwanted emissions via the HAPS uplink in the 31.3-31.8 GHz band, one or more spot beam cells around an RAS station
9、should be excluded from the service area of the fixed service using HAPS. NOTE 1 Recommendation ITU-R F.1569 contains typical parameters describing the HAPS system for the evaluation of the impact of unwanted emissions on the RAS in the 31 GHz band. NOTE 2 The aggregate interference from fixed servi
10、ce, including HAPS, needs to be considered. Annex 1 Typical parameters of the RAS and a model to be used for impact evaluation from HAPS ground station on the RAS station 1 Parameters of uplink transmission in HAPS system The parameters regarding HAPS systems are based on Recommendation ITU-R F.1569
11、 (altitude: 20-25 km, minimum operational elevation angle: 20, and in rainy conditions). The footprint formed by a spot beam is referred to as a cell. A frequency reuse factor of four is adopted in this study, that is, the available frequency band of 300 MHz (31.0-31.3 GHz) is equally divided into f
12、our sub-bands of 75 MHz which are used simultaneously for uplink transmissions in multiple cells. An automatic power control scheme is adopted in the uplink, in which the power is increased or decreased by 6 dB, depending on weather conditions. The level of out-of-band emissions in a HAPS uplink use
13、d in this study is 100 dB(W/MHz) under rainy conditions, assuming that automatic transmitting power control is being used in the uplink. The derivation of the out-of-band emission level is described in 11 of Recommendation ITU-R F.1569. 2 Parameters of RAS The parameters of RAS antennas used in this
14、 study are shown in Table 1. It is assumed that the RAS antenna is pointing at the azimuth of the HAPS ground station, at the minimum operational elevation for that particular radio telescope. The gain of the receiving antenna for the interference is calculated using Recommendation ITU-R SA.509 for
15、the separation angle of more than 1 between the boresight direction of RAS antenna and the direction of arrival of the interference. Rec. ITU-R F.1612 3 TABLE 1 Parameters of RAS antennas used in this study 3 Interference evaluation model 3.1 Single entry Figure 1 shows the interference evaluation m
16、odel for one HAPS ground station and one RAS station. It is assumed that HAPS ground station is located in the same plane as the RAS station. Two situations are considered regarding the antenna boresight direction of HAPS ground station. One is that the antenna of HAPS ground station faces to the RA
17、S station in azimuth (worst case in the single entry scenario) and the other is that the antenna of HAPS ground station is directed at an azimuth 180 away from the direction of the RAS station. It is assumed that the RAS antenna is being operated with the minimum operational elevation angle in both
18、cases. 1612-012020dHAPSRAS station Two models of HAPS ground stationsat the same altitude of RAS stationFIGURE 1Interference from a HAPS ground station to a RAS station (single entry case)Minimum operationalelevation angleInterferenceFaces to RAS station Faces against RAS stationGmax(dBi) Diameter (
19、m) Altitude (km) Minimum operational elevation angle (degrees) Nobeyama (Japan) 81.2 45 1.35 15 Taeduk (Korea) 70.9 13.7 0.12 15 Delingha (China) 70.9 13.7 3.2 5 4 Rec. ITU-R F.1612 3.2 Aggregate interference from multiple HAPS stations As shown in Fig. 2, the following models and assumptions are us
20、ed for the evaluation of aggregate interference: four HAPS ground stations are located in the centre of each service cell and all the antennas point to the corresponding HAPS airship (total bandwidth of 300 MHz (31.0-31.3 GHz), frequency reuse of four times and signal bandwidth of 20 MHz are assumed
21、); the aggregate interference is obtained by summing a parameter defined as the “received interference pfd at RAS station” plus “receiving RAS station gain for the interference” for all HAPS ground stations (= 367 cell 4 stations 3 HAPS service area); the out-of-band emission power of 100 dB(W/MHz)
22、is assumed from each HAPS ground station; the RAS antenna is located at between the boundary, A, of the three HAPS service areas and the nadir point O; RAS antenna located at point B directs A or O in azimuth. It is assumed that the RAS antenna is at the lowest elevation angle at which observations
23、are made using that instrument (5 or 15). 1612-02S2S1OBAXYS3RAS antenna5 or 155 or 15FIGURE 2Model example for aggregate interference evaluationA: boundary of three HAPS service areasB: location of RAS antenna on segment AOO: nadir point of HAPSS1: main areaS2S3: sub areaRAS antenna located at point
24、 B directs A or O in azimuth.Rec. ITU-R F.1612 5 Annex 2 Propagation model and protection criteria of RAS 1 Propagation model According to Recommendation ITU-R P.452, 4.2, the propagation loss between stations on the surface of the Earth not exceeded for time percentage, p% is given by: gsbApEdfpL +
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