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The federal government bands are administered separately by the National Telecommunications and Information Administration (NTIA) and are not subject to FCC restrictions on frequency diversity or minimum loading The 8-GHz band (7125 85 GHz) is the preferred Federal Government band for high capacity microwave This band is not available to common carriers or private users operating under FCC Part 101 NTIA regulations allow 1+1 frequency diversity systems in the federal government bands If frequency diversity is used in N + 1 operation, and N > 1, we expect that the diversity improvement factor Ifd, will be reduced since there are more than one channel sharing the same diversity channel Additionally, it is assumed that no more than two of the RF-channels are simultaneously affected by equal fading
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Calculate frequency diversity improvement factor on the 6175 GHz link, 30-mi long, if the frequency spacing is 100 MHz, and the composite fade margin is 36 dB
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I FD 174 Since the frequency diversity improvement factor is reversely proportional to the link length, its value becomes very large for short path As mentioned earlier, this formula is only valid for path lengths of more than 30 km (or approximately 19 mi) and should not be used for paths shorter than 19 mi
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3723 Hybrid Diversity Hybrid diversity (HD) is an enhancement (SD+FD) of space diversity that uses frequency diversity (when permitted) Hybrid diversity is the most effective of all of the diversity arrangements and is preferred in difficult propagation areas, such as those covering very long distances or transmitting over water Here, one side of the link has one antenna and the other one has two antennas (SD) It is possible to compute frequency and hybrid diversity improvements for links in regions where regulatory rules or waivers so permit The hybrid diversity improvement factor, Ihd, is derived either from the space Isd or frequency diversity improvement factor Ifd described previously, or using both values
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The higher T/R frequencies must always be assigned to the upper antenna at the space diversity (usually the lower elevation) end of each hybrid diversity link for optimum performance Quad diversity is a type of hybrid diversity in which both sides of the link have space and frequency diversity, ie, a four-antenna system There are a number of different formulas to calculate quad diversity improvement factor Using microwave radio systems below 10 GHz, hop lengths of about 80 km (50 mi) usually are achieved without problems, utilizing standard diversity techniques11 When longer distances have to be spanned, however, the problems of propagation increase dramatically In the early 1990s, Siemens installed one of the longest over-the-water microwave hops for the Mexican telephone company, Telmex This hop was installed across the Gulf of California in the Baja California region, and was 160 km (100 mi) long Many classic models for estimating the fading behavior of a radio hop assume one reflection point and therefore two superimposed waves at the receiver location This basic assumption does not apply under extreme conditions such as this one To meet quality requirements under these very problematic propagation conditions, a customized solution and a number of unusual technical measures were implemented:
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Four large 46-m parabolic antennas at each side were used A selection of the best of eight received signals at any time was made (four antennas with two different frequencies) Custom-designed, very low-loss channel branching lters, using waveguide technology without circulators, were implemented Increased frequency spacing, achieving greater ef ciency of frequency diversity reception, was used
Theory and practice show that a higher number of receiving antennas increase the probability of receiving a strong and less distorted signal
3724 Angle Diversity Angle diversity (sometimes called angle-ofarrival diversity) is a special case of space diversity Angle diversity (AD) has been used in line-of-sight digital microwave links since the mid-1980s and in troposcatter links since the 1950s This method used to be popular when digital radios were less robust, but today AD antennas are assigned mostly where installation constrictions (roof mounts problems, space, aesthetics, tower loading, and so on) prohibit SD and thus justify these less-effective, more-costly dishes
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