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, assuming independent branches in a Nakagami environment. The analytical results are thoroughly validated by reducing the general case to some special cases, for which the solutions are known, and by means of simulation for the more general case. The model developed here is general and can be easily applied to other fading statistics (e.g., Rice).5061464147
The multi-branch diversity combining technique has been widely used in wireless communications syste...
The multi-branch diversity combining technique has been widely used in wireless communications syste...
The severity of fading on mobile communication channels calls for the combining of multiple diversit...
Exact and closed-form expressions for the level crossing rate and average fade duration are presente...
Exact and closed-form expressions for the level crossing rate and average fade duration are presente...
Abstract—This paper derives exact expressions for the level crossing rate and average fade duration ...
In this article, we have studied the statistical properties of the capacity of Nakagami-m channels w...
In this paper, using an approach based on moment estimators, we propose highly accurate closed-form ...
Exact and closed-form expressions for the level crossing rate and average fade duration are presente...
Exact expressions for the level crossing rate and average fade duration of M-branch equal-gain and m...
Abstract: A closed formulation for the evaluation of the error probability of L-branches Equal-Gain...
In this paper, general exact expressions for the level crossing rate and average fade duration of th...
The severity of fading on mobile communication channels calls for the combining of multiple diversit...
Abstract — Exact expressions for the level crossing rate and average fade duration of M-branch equal...
The severity of fading on mobile communication channels calls for the combining of multiple diversit...
The multi-branch diversity combining technique has been widely used in wireless communications syste...
The multi-branch diversity combining technique has been widely used in wireless communications syste...
The severity of fading on mobile communication channels calls for the combining of multiple diversit...
Exact and closed-form expressions for the level crossing rate and average fade duration are presente...
Exact and closed-form expressions for the level crossing rate and average fade duration are presente...
Abstract—This paper derives exact expressions for the level crossing rate and average fade duration ...
In this article, we have studied the statistical properties of the capacity of Nakagami-m channels w...
In this paper, using an approach based on moment estimators, we propose highly accurate closed-form ...
Exact and closed-form expressions for the level crossing rate and average fade duration are presente...
Exact expressions for the level crossing rate and average fade duration of M-branch equal-gain and m...
Abstract: A closed formulation for the evaluation of the error probability of L-branches Equal-Gain...
In this paper, general exact expressions for the level crossing rate and average fade duration of th...
The severity of fading on mobile communication channels calls for the combining of multiple diversit...
Abstract — Exact expressions for the level crossing rate and average fade duration of M-branch equal...
The severity of fading on mobile communication channels calls for the combining of multiple diversit...
The multi-branch diversity combining technique has been widely used in wireless communications syste...
The multi-branch diversity combining technique has been widely used in wireless communications syste...
The severity of fading on mobile communication channels calls for the combining of multiple diversit...