ITU-R QUESTION 204-43-2009 Propagation data and prediction methods required for terrestrial line-of-sight systems《陆地视线系统所需的传播数据和预测方法》.pdf
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1、QUESTION ITU-R 204-4/3Propagation data and prediction methods requiredfor terrestrial line-of-sight systems(1990-1993-1995-1997-2000-2009)The ITU Radiocommunication Assembly,consideringa) that a better knowledge of the characteristics of propagation contributes greatly to thedesign of economic line-
2、of-sight systems and to the improvement of system performance and inparticular: that the design of digital systems is largely controlled by the performance and theavailability required (as related to propagation) and that periods of adverse propagation aresignificant to the design of digital systems
3、; that amplitude and group-delay distortions across a microwave radio channel have aprofound effect on the bit error ratio of digital systems,decides that the following Questions should be studied1 What is the distribution of the value of transmission loss additional to free space resultingfrom mult
4、ipath propagation, diffraction, precipitation and absorption, etc., for frequency bandsabove about 300 MHz for each month of the year, including its diurnal variation averaged over eachmonth?2 What propagation data may be used for station site selection and for determining the heightof antennas and
5、their radiation characteristics, including the distribution of refractive-index gradientor k-factor during subrefractive conditions averaged over a specified path length?3 What data may be obtained on clear-air propagation effects (both fading andenhancements), in particular: the number of atmospher
6、ic and ground reflected rays during multipath propagation, and thestatistical distribution of their relative amplitudes and delays; statistics of single-frequency fading, flat fading, selective fading (including minimum andnon-minimum phase fading, in-band power differences (IBPD), in-band amplitude
7、dispersions (IBAD) and notch depths) and composite fading (flat plus selective), anddiffraction fading; conditional probabilities of flat fading, selective fading, delays and notch depth todetermine the inter-dependence of the principal multipath parameters;- 2 - the dependence of all the items abov
8、e on: path and terrain characteristics, frequency, antenna patterns and geoclimatic factors; diversity (angle, space and in-band and cross-band frequency); degree of correlation of multipath fading on different channels on the same path anddifferent paths in a multi-hop link?4 What models of the tro
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