ITU-R M 1653-2003 Operational and deployment requirements for wireless access systems including radio local area networks in the mobile service to facilitate sharing between these sate.pdf
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1、 Rec. ITU-R M.1653 1 RECOMMENDATION ITU-R M.1653*,*Operational and deployment requirements for wireless access systems including radio local area networks in the mobile service to facilitate sharing between these systems and systems in the Earth exploration-satellite service (active) and the space r
2、esearch service (active) in the band 5 470-5 570 MHz within the 5 460-5 725 MHz range (Questions ITU-R 218/7, ITU-R 212/8 and ITU-R 142/9) (2003) The ITU Radiocommunication Assembly, recognizing a) that additional spectrum for the Earth exploration-satellite service (EESS) (active) and space researc
3、h service (SRS) (active) in the 5 GHz frequency range would support new applications (e.g. wideband sensors); b) that harmonized frequencies in the 5 GHz frequency range for the mobile service would facilitate the introduction of wireless access systems (WASs) including radio local area networks (RL
4、ANs); c) that WAS including RLANs operating in the 5 GHz bands can provide effective solutions to broadband delivery to commercial and residential users; d) that Recommendation ITU-R M.1450 provides a description of WAS including RLANs that are intended to operate in the 5 GHz frequency range; e) th
5、at administrations can approve relevant transmission characteristics of WAS including RLANs required to facilitate sharing with EESS (active) through national equipment approval processes; f) that spreading the loading of WAS across the 5 470-5 725 MHz band would reduce the aggregate emission levels
6、 from WAS into EESS (wideband synthetic aperture radars (SARs) in the band 5 470-5 570 MHz, considering a) that many administrations permit WAS including RLAN devices to operate in the band 5 470-5 725 MHz on a licence-exempt basis as well as in other bands such as 5 150-5 350 MHz and 5 725-5 850 MH
7、z; b) that broadband RLANs could be deployed as licence-exempt devices, consequently making control of their deployment density more difficult; *This Recommendation was jointly developed by Radiocommunication Study Groups 8 and 9, and future revisions should be undertaken jointly. *This Recommendati
8、on should be brought to the attention of Radiocommunication Study Group 7. 2 Rec. ITU-R M.1653 c) that the deployment density of WAS including RLANs will depend on a number of factors including intrasystem interference and by the availability of other competing wireless and wireline access technolog
9、ies and services; d) that there is a need to specify an appropriate e.i.r.p. limit and operational restrictions for WAS including RLANs in the mobile service in this band in order to share with systems in the EESS (active) and the SRS (active); e) that studies conducted by the ITU-R concluded that r
10、adar altimeter operation with a 320 MHz bandwidth centred at 5.41 GHz is compatible with WAS including RLAN characteristics (indoor/outdoor) with an e.i.r.p. of 1 W or less; f) that user terminals will normally be operated while in a stationary position; g) that WAS including RLANs are capable of op
11、erating both indoors and outdoors; h) that interference mitigation techniques such as antenna masks, transmitter power control (TPC), dynamic frequency selection (DFS) and indoor operation are beneficial to sharing between EESS (active) and SRS (active) and WAS including RLANs; j) that aggregate int
12、erference from WAS including RLANs to the EESS (active) and SRS (active) receivers with 320 MHz bandwidth, which could overlap with the 5 470-5 570 MHz band, should be taken into account; k) that the performance and interference criteria of spaceborne active sensors in the EESS (active) are given in
13、 Recommendation ITU-R SA.1166, noting a) that the characteristics of EESS (active) encompass those of SRS (active), recommends 1 that to facilitate sharing with EESS (active) and SRS (active) in the band 5 470-5 570 MHz, as described in Annex 1, either the operational and technical restrictions give
14、n in recommends 2, where WAS is limited to a maximum e.i.r.p. of 1 W, or those given in recommends 3, where WAS is limited to a maximum transmitter power of 250 mW and other WAS configurations with spectral masks versus elevations angle, should be applied to WAS including RLANs; 2 that WAS including
15、 RLANs, operating either indoors or outdoors, in the band 5 470-5 570 MHz as described in Annexes 2 and 3, should: a) be limited to 1 W maximum mean e.i.r.p. and 17 dBm/MHz maximum mean e.i.r.p. spectral density per transmitter (Note 1); b) employ TPC to give an aggregate power reduction of at least
16、 3 dB. If transmitter power control is not implemented, then the power limitation given above should be reduced by 3 dB; c) employ DFS operating across the 5 470-5 725 MHz band designed to provide near uniform loading of the available channels; Rec. ITU-R M.1653 3 NOTE 1 The interference criteria of
17、 spaceborne active sensors in the EESS (active) are provided by Recommendation ITU-R SA.1166. Further studies are required to confirm the suitability of these limitations in recommends 2 to comply with the requirements of Recommendation ITU-R SA.1166. 3 that WAS including RLANs operating either indo
18、ors or outdoors in the band 5 470-5 570 MHz, as described in Annexes 2 and 4, should be subject to the following conditions: a) a maximum transmitter power of 250 mW (24 dBm) or 11 + 10 log B (dBm) per transmitter, whichever power is less (B is the 99% power bandwidth (MHz); b) a maximum e.i.r.p. sh
19、ould not exceed 1 W (0 dBW) or 13 + 10 log B (dBW) per transmitter, whichever power is less; c) the e.i.r.p. spectral density of the emission of a WAS including RLANs base station transmitter operating outdoor in the band 5 470-5 570 MHz should not exceed the following values for the elevation angle
20、 above the local horizontal plane (of the Earth): 13 dB(W/MHz) for 0 45 Annex 1 Methodology and parameters used in sharing studies 1 Technical characteristics of wideband spaceborne active sensors Technical characteristics of wideband spaceborne active sensors in the 5 250-5 570 MHz band are given i
21、n Tables 1 and 2. TABLE 1 5.3 GHz typical wideband spaceborne SAR characteristics Value Parameter SAR2 SAR3 Orbital altitude (km) 600 (circular) 400 (circular) Orbital inclination (degrees) 57 RF centre frequency (MHz) 5 405 Peak radiated power (W) 4 800 1 700 Polarization Horizontal and vertical (H
22、H, HV, VH, VV) Pulse modulation Linear FM chirp Pulse bandwidth (MHz) 310 4 Rec. ITU-R M.1653 TABLE 1 (end) Value Parameter SAR2 SAR3 Receiver bandwidth (MHz) 320 Pulse duration (s) 31 33 Pulse repetition rate (pps) 4 492 1 395 Duty cycle (%) 13.9 5.9 Range compression ratio 9 610 10 230 Antenna typ
23、e (m) Planar phased array 1.8 3.8 Planar phased array 0.7 12.0 Antenna peak gain (dBi) 42.9 42.7/38 (full focus/beamspoiling) Antenna median side-lobe gain (dBi) 5 Antenna orientation (degrees from nadir) 20-38 20-55 Antenna beamwidth (degrees) 1.7 (El), 0.78 (Az) 4.9/18 (El), 0.25 (Az) Antenna pola
24、rization Linear horizontal/vertical System noise temperature (K) 550 Receiver front end 1 dB compression point ref to receiver input (dBW) 62 input Analogue-digital converter (ADC) saturation ref to receiver input 114/54 dBW input 71/11 dB receiver gain Receiver input maximum power handling (dBW) +7
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