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MRCS - Selecting Maximal Ratio Combined Signals: A Practical Hybrid Diversity Combining Scheme
(Ieee-inst Electrical Electronics Engineers IncPiscatawayEUA, 2009)
Level crossing rate and average fade duration for pure selection and threshold selection diversity-combining systems
(John Wiley & Sons LtdW SussexInglaterra, 2001)
Second-order statistics for diversity-combining, techniques in Nakagami-fading channels
(Institute of Electrical and Electronics Engineers (IEEE), 2001-11-01)
Exact and closed-form expressions for the level crossing rate and average fade duration are presented for the M branch pure selection combining (PSC), equal gain combining (EGC), and maximal ratio combining (MRC) techniques, ...
Second-order statistics for diversity-combining, techniques in Nakagami-fading channels
(Institute of Electrical and Electronics Engineers (IEEE), 2001-11-01)
Exact and closed-form expressions for the level crossing rate and average fade duration are presented for the M branch pure selection combining (PSC), equal gain combining (EGC), and maximal ratio combining (MRC) techniques, ...
Second-order statistics for diversity-combining of non-identical correlated Hoyt signals
(Ieee-inst Electrical Electronics Engineers IncPiscatawayEUA, 2008)
Diversity control for improving the analysis of consensus clustering
(Elsevier Science Inc, 2016-09)
Consensus clustering has emerged as a powerful technique for obtaining better clustering results, where a set of data partitions (ensemble) are generated, which are then combined to obtain a consolidated solution (consensus ...
Achieving Near Maximum Ratio Combining Diversity Gains With Directive Antennas
(2017)
We present an empirically based comparison of the effectiveness of spatial and angular diversity systems in outdoor-to-indoor fixed wireless links. We concentrate on the simple to implement, single RF-chain selection ...
Second-order statistics for diversity-combining, techniques in Nakagami-fading channels
(Ieee-inst Electrical Electronics Engineers IncNew YorkEUA, 2001)
Second-order statistics for diversity-combining, techniques in Nakagami-fading channels
(Institute of Electrical and Electronics Engineers (IEEE), 2014)
General exact level crossing rate and average fade duration for dual-diversity combining of nonidentical correlated Weibull signals
(Ieee-inst Electrical Electronics Engineers IncPiscatawayEUA, 2007)