ITU-R M 1642-2-2007 Methodology for assessing the maximum aggregate equivalent power flux-density at an aeronautical radionavigation service station from all radionavigation-satell215 .pdf
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1、 Rec. ITU-R M.1642-2 1 RECOMMENDATION ITU-R M.1642-2 Methodology for assessing the maximum aggregate equivalent power flux-density at an aeronautical radionavigation service station from all radionavigation-satellite service systems operating in the 1 164-1 215 MHz band (2003-2005-2007) Scope This R
2、ecommendation gives a methodology and the reference antenna characteristics for assessing the maximum aggregate equivalent power flux-density (epfd) level produced at the input of a station of the aeronautical radionavigation service (ARNS) by all radionavigation-satellite service (RNSS) systems ope
3、rating in any portion of the 1 164-1 215 MHz band. The ITU Radiocommunication Assembly, considering a) that in accordance with the Radio Regulations (RR), the band 960-1 215 MHz is allocated on a primary basis to the aeronautical radionavigation service (ARNS) in all the ITU Regions; b) that analyse
4、s show that RNSS signals in the 1 164-1 215 MHz band can be designed not to cause interference to the DME/TACAN ARNS receivers operating in this band; c) that a protection criterion for the ARNS has been developed and is expressed in terms of equivalent power flux-density (epfd), which is set out in
5、 Recommendation ITU-R M.1639, recognizing a) that WRC-2000 introduced a co-primary allocation for the RNSS in the frequency band 1 164-1 215 MHz, subject to conditions that require the RNSS to protect the ARNS from harmful interference; b) that WRC-03 determined that protection of the ARNS from RNSS
6、 can be achieved if the value of the epfd produced by all the space stations of all RNSS (space-to-Earth) systems in the band 1 164-1 215 MHz does not exceed the level of 121.5 dB(W/m2) in any 1 MHz band, and adopted Resolution 609 (WRC-03) in order to ensure that this level is not exceeded; c) that
7、 the ARNS is a safety service in accordance with RR No. 1.59 and special measures need to be taken by Administrations to protect these services in accordance with provision RR No. 4.10, recommends 1 that the methodology in Annex 1 and the reference ARNS characteristics in Annex 2 should be used to c
8、alculate the maximum aggregate epfd produced by emissions from all RNSS systems at any aeronautical radionavigation station. 2 Rec. ITU-R M.1642-2 Annex 1 Methodology for assessing the maximum aggregate epfd at an ARNS station from all RNSS systems operating in the 1 164-1 215 MHz band Summary of th
9、e method With the method described in this Annex it is possible to calculate the maximum aggregate epfd level of all RNSS systems in the band 1 164-1 215 MHz. This method allows different systems to be combined easily, so that the effect of changes such as including or excluding one or various syste
10、ms or the effect of changing the characteristics of specific systems can be examined during a consultation meeting. The method accommodates both non-GSO systems, with constellations of satellites in any orbits of any inclination, and GSO systems. The method is based on a two-step process: Step 1: Ca
11、lculation of the epfd of each individual RNSS system. This step may be performed by each operator independently prior to the consultation meeting, provided that results are submitted in a compatible format (see 1.3, for non-GSO systems, and 1.4, for GSO systems). Step 2: Combination of the maximum e
12、pfd of the individual systems, by superposition of the maps, if necessary at different frequencies, to obtain the maximum aggregate epfd (see 2) in the band 1 164-1 215 MHz. Description of the method 1 Method for calculating the maximum epfd from satellites of one RNSS system 1.1 Definition of epfd
13、The definition of equivalent power flux-density (epfd) is based upon RR No. 22.5C.1 as adopted at WRC-2000. When an antenna receives power, within its reference bandwidth, simultaneously from transmitters at various distances, in various directions and at various levels of incident pfd, the epfd is
14、that pfd which, if received from a single transmitter in the far field of the antenna in the direction of maximum gain, would produce the same power at the input of the receiver as is actually received from the aggregate of the various transmitters. The instantaneous epfd is calculated using the fol
15、lowing formula: =aiiNimaxriritPGGdGepfd1,1010)(4)(10log102where: Na: number of space stations that are visible from the receiver i : index of the space station considered Rec. ITU-R M.1642-2 3 Pi: RF power (in the reference bandwidth) at the input of the antenna (or RF radiated power in the case of
16、an active antenna) of the transmitting space station (dB(W/MHz) i: off-axis angle (degrees) between the boresight of the transmitting space station and the direction of the receiver Gt(i) : transmit antenna gain (as a ratio) of the space station in the direction of the receiver di: distance (m) betw
17、een the transmitting station and the receiver i: off-axis angle (degrees) between the pointing direction of the receiver and the direction of the transmitting space station Gr(i) : receive antenna gain (as a ratio) of the receiver, in the direction of the transmitting space station (see Annex 2) Gr,
18、 max: maximum gain (as a ratio) of the receiver epfd : instantaneous equivalent power flux-density (dB(W/(m2 MHz) at the receiver. NOTE 1 It is assumed that each transmitter is located in the far field of the receiver (that is, at a distance greater than 2D2/, where D is the effective diameter of th
19、e receiver antenna and is the observing wavelength in the same unit). In the case under consideration this will always be satisfied. 1.2 General consideration In the first step of the method, the maximum epfd for each constellation of RNSS satellites is calculated at each latitude and longitude over
20、 the whole surface of the Earth for each 1 MHz of spectrum occupied by the system. As the victim ARNS receiver may be mounted on an aircraft flying at an altitude up to 40 000 ft (12 192 m) (see 2 of Annex 2), the calculation should include all satellites with elevation angles from 90 down to 3.54.
21、Calculation of the epfd distribution of each system is only necessary at a single reference frequency, preferably the frequency at which signal power is maximum. The RNSS signal spectral shape should be supplied to a consultation meeting, so that results of the calculation can then be multiplied by
22、the appropriate spectral shaping factors to obtain the results at any other frequency. 1.3 Method for calculating the maximum epfd for a non-GSO RNSS system The simulation methodology given in Appendix 1 to Annex 1, which is based entirely on Recommendation ITU-R S.1325, may be used to accomplish th
23、is. The methodology, given in Appendix 2 to Annex 1, is based entirely on an analytical technique. The method could be used for obtaining prompt estimates but it does not yield an exact upper bound result. 1.4 Method for calculating the maximum epfd for a GSO RNSS system The maximum epfd for each GS
24、O satellite is required to be calculated at each latitude and longitude over the whole surface of the Earth for each 1 MHz of spectrum occupied by the system. In this case the epfd will not be dependent on time, so a single table of results can be calculated directly. 4 Rec. ITU-R M.1642-2 2 Method
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