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`Journals & Magazines > Proceedings of the IRE > Volume: 47 Issue: 6
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`Linear Diversity Combining Techniques
`Publisher: IEEE
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`D. G. Brennan View All Authors
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`Abstract: This paper provides analyses of three types of diversity combining systems in
`practical use. These are: selection diversity, maximal-ratio diversity, and equal-gain
`diver... View more
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`Abstract:
`This paper provides analyses of three types of diversity combining systems in practical
`use. These are: selection diversity, maximal-ratio diversity, and equal-gain diversity
`systems. Quantitative measures of the relative performance (under realistic conditions)
`of the three systems are provided. The effects of various departures from ideal
`conditions, such as non-Rayleigh fading and partially coherent signal or noise voltages,
`are considered. Some discussion is also included of the relative merits of predetection
`and postdetection combining and of the problems in determining and using long-term
`distributions. The principal results are given in graphs and tables, useful in system
`design. It is seen that the simplest possible combiner, the equal-gain system, will
`generally yield performance essentially equivalent to the maximum obtainable from any
`quasi-linear system. The principal application of the results is to diversity communication
`
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`Titanium-Substitut
`for High-Density a
`Coefficient-of-Cap
`by Low-Temperatu
`IEEE Electron Dev
`Published: 2010
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`Capacitance–Freq
`Border-Trap Dens
`Capacitors
`IEEE Transactions
`Published: 2018
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`Top Organiza
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`Linear Diversity Combining Techniques - IEEE Journals & Magazine
`systems and the discussion is set in that context, but many of the results are also
`applicable to certain radar and navigation systems.
`
`Published in: Proceedings of the IRE ( Volume: 47 , Issue: 6 , June 1959 )
`
`Page(s): 1075 - 1102
`
`DOI: 10.1109/JRPROC.1959.287136
`
`Date of Publication: June 1959
`
`Publisher: IEEE
`
` ISSN Information:
`IEEE Keywords
`
`Diversity reception, Voltage, Capacitors, Capacitance, Temperature, Fading,
`Electrodes, Frequency, Niobium, Electric breakdown
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`Diversity reception, Voltage, Capacitors, Capacitance, Temperature, Fading,
`Electrodes, Frequency, Niobium, Electric breakdown
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`A not-for-profit organization, IEEE is the world's largest technical professional organization dedicated to advancing technology for the benefit of humanity.
`© Copyright 2019 IEEE - All rights reserved. Use of this web site signifies your agreement to the terms and conditions.
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