ITU-R SF 1572-2002 Methodology to evaluate the impact of space-to-Earth interference from the fixed-satellite service to the fixed service in frequency bands where precipitation is.pdf
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1、 Rec. ITU-R SF.1572 1 RECOMMENDATION ITU-R SF.1572*Methodology to evaluate the impact of space-to-Earth interference from the fixed-satellite service to the fixed service in frequency bands where precipitation is the predominant fade mechanism (Questions ITU-R 250/4 and ITU-R 217/9) (2002) The ITU R
2、adiocommunication Assembly, considering a) that emissions from space stations in the fixed-satellite service (FSS) operating in geo-stationary orbit (GSO) and sharing the same spectrum as the fixed service (FS) may produce interference in receiving stations of the FS; b) results obtained using a sta
3、tistical approach compared to a worst-case analysis may lead to a more efficient use of the spectrum than results from criteria developed using worst-case analysis; c) that sharing methodologies should take into consideration the performance requirements and deployment characteristics of FS systems
4、being used and planned for use in these frequency bands; d) that in spectrum where precipitation is the predominant fade mechanism it is desirable to have an interference evaluation tool using C/N, C/I and C/(N + I) statistics to determine impact on availability; e) that such an interference evaluat
5、ion tool may have application in bands above about 17 GHz to assist administrations in performing sharing studies, recommends 1 that the methodology as described in Annex 1 can be used for developing computer simulation tools which evaluate the impact of interference from FSS systems to digital FS s
6、ystems operating in frequency bands above 17 GHz. _ *The methodology in Annex 1 concentrates on interference from GSO FSS systems. Further studies are required in order to ensure that this methodology is generally applicable to interference from non-GSO FSS systems. 2 Rec. ITU-R SF.1572 ANNEX 1 1 In
7、troduction The methodology described in this Annex provides a model for an analysis of all of the FS system parameters and local geoclimatic parameters of both point-to-point (P-P) and point-to-multipoint (P-MP) systems, which may contribute to the susceptibility of FS receivers to interference from
8、 FSS downlinks. 1.1 Definitions In the frequency bands where precipitation is the predominant fade mechanism, FS design objectives are determined by availability performance rather than error performance. For the purpose of this Recommendation, the term “designed availability” is considered based up
9、on severely errored second (SES) threshold taking into account that in these frequency bands the percentage of events with consecutive SESs less than 10 s is negligible. Hereafter the designed availability for any FS link is estimated by the percentage of time in an average year that a receiver sign
10、al, C/N, falls below the threshold, C/Nth, which corresponds to SES events. Throughout this Annex, unavailability (100% availability) is indicated by the symbol pD(%). Designed availability for P-MP system The design availability is the percentage of time in an average year that the carrier-to-total
11、 noise plus interference, C/(N + I ), into a reference subscriber located at the maximum radius of a P-MP cell will receive at or above the threshold C/Nth. Designed availability for P-P The design availability is the percentage of time in an average year that the carrier-to-total noise plus interfe
12、rence, C/(N + I ), into the receiver will receive at or above the threshold C/Nth. Reference subscriber for a P-MP system The receiver which is located at the maximum distance from the transmitting hub antenna which is used to calculate the transmit power necessary to achieve the designed availabili
13、ty. In P-MP systems, which are modelled with subscriber antennas that have heights, which follow a statistical distribution, the height of the reference receiver is the most probable height. In such a P-MP system model, a hub antenna to which just sufficient transmitter power is delivered to achieve
14、 the designed availability on a link to the reference receiver, will not have sufficient transmit power to meet the designed availability of 100% of all possible subscribers. This is due to a combination of lesser hub antenna gain and greater free space loss in the direction of subscribers also at o
15、r near the maximum distance from the hub antenna. Additional power delivered to the hub antenna would be required for all possible subscribers to achieve their designed availability in a P-MP system characterized by subscriber antennas that have heights, which follow a statistical distribution. Four
16、 types of modulations employed by FS systems are referred to in this Annex. These types of modulation are: quadrature phase shift keying (QPSK) and three different types of quadrature amplitude modulation (16-QAM, 64-QAM and 256-QAM). Rec. ITU-R SF.1572 3 2 Types of FS systems analysed for susceptib
17、ility to GSO FSS interference Based on the systems described in Recommendation ITU-R F.758, there are two distinctly different implementations of FS systems. 2.1 P-MP system The P-MP system is characterized by a central or “hub” transmitting antenna that radiates omnidirectionally in the horizontal
18、plane (azimuth) and directionally in the vertical plane (elevation). The hub antenna radiation pattern is accomplished by combining a number of sector antennas together and may be given a negative elevation angle bias in order to maximize coverage from a high point on the top of a tall building or t
19、ower. The user or “subscriber” antennas, in contrast, are directive and for computational purposes may be assumed to be axially symmetric. The distribution of subscribers over a specified range of possible values of hop length may be statistically modelled or user defined. Some of todays modern, thi
20、rd generation P-MP systems operate on up to three modulations simultaneously such as: QPSK, 16-QAM, 64-QAM and 256-QAM. Such a configuration allows a higher traffic capacity per sector, which is essential to make the networks more economical. The result is that in every cell site, up to three concen
21、tric rings may exist where the same minimum availability objective is encountered. This means that a much larger number of subscribers that receive higher capacities have higher average elevation angles than in P-MP cells and are modelled using a single modulation scheme throughout the whole cell. S
22、ubscribers operating at the higher modulation levels in the inner-most rings are inherently subject to higher power flux-density (pfd) levels from satellites operating in the GSO due to having higher elevation angles than those subscribers in the outer rings. The overall impact from FSS interference
23、 on the availability of such a P-MP system may be statistically modelled by weighting either the number of subscribers (independent of the capacity) in each of the rings or by weighting the number of subscribers of equivalent capacity by post processing the availability data obtained from analysing
24、each of the rings individually. Applying the methodology over a large range of possible deployment scenarios allows the sensitivity of P-MP systems to a variety of FS system parameters, including FS receiver antenna diameter, receiver system noise figure, P-MP cell characteristics and geoclimatic fa
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