This paper presents simple closed-form expressions for the ergodic channel capacity of SIMO (single-input and multiple output) wireless systems operating in a Nakagami fading channel. As the performance of SIMO channel is closely related to the diversity combining techniques, we present close form expressions for the capacity of maximal ratio combining (MRC), equal gain combining (EGC) and selection combining (SC) diversity systems for Nakagami fading channels. Also for the first time in international literature, the ergodic capacity of a SIMO system in a Nakagami fading channel with none diversity combining technique applied, is derived. Finally numerical results are presented for illustration
The severity of fading on mobile communication channels calls for the combining of multiple diversit...
In this article, we have studied the statistical properties of the instantaneous channel capacitya o...
[[abstract]]We consider a hybrid selection/maximal-ratio combining (HS/MRC) diversity system and ass...
This paper presents closed-form expressions for the ergodic channel capacity of SIMO (single-input a...
This paper presents closed-form expressions for the ergodic channel capacity of SIMO (single-input a...
This paper presents closed-form expressions for the ergodic channel capacity of SIMO (single-input a...
This paper presents closed-form expressions for the ergodic channel capacity of SIMO (single-input a...
This paper presents closed-form expressions for the ergodic channel capacity of SIMO (single-input a...
This paper presents closed-form expressions for the ergodic channel capacity of SIMO (single-input a...
This is an open access article distributed under the Creative Commons Attribution License, which pe...
In this article, we have studied the statistical properties of the capacity of Nakagami-m channels w...
We discuss the channel capacity of multiantenna systems with the Nakagami fading channel. Analytic ...
[[abstract]]In this paper, we derive closed-form expressions for the channel capacity of a diversity...
In this paper, we present the performance analysis of multi-antenna system over Nakagami-n fading ch...
The severity of fading on mobile communication channels calls for the combining of multiple diversit...
The severity of fading on mobile communication channels calls for the combining of multiple diversit...
In this article, we have studied the statistical properties of the instantaneous channel capacitya o...
[[abstract]]We consider a hybrid selection/maximal-ratio combining (HS/MRC) diversity system and ass...
This paper presents closed-form expressions for the ergodic channel capacity of SIMO (single-input a...
This paper presents closed-form expressions for the ergodic channel capacity of SIMO (single-input a...
This paper presents closed-form expressions for the ergodic channel capacity of SIMO (single-input a...
This paper presents closed-form expressions for the ergodic channel capacity of SIMO (single-input a...
This paper presents closed-form expressions for the ergodic channel capacity of SIMO (single-input a...
This paper presents closed-form expressions for the ergodic channel capacity of SIMO (single-input a...
This is an open access article distributed under the Creative Commons Attribution License, which pe...
In this article, we have studied the statistical properties of the capacity of Nakagami-m channels w...
We discuss the channel capacity of multiantenna systems with the Nakagami fading channel. Analytic ...
[[abstract]]In this paper, we derive closed-form expressions for the channel capacity of a diversity...
In this paper, we present the performance analysis of multi-antenna system over Nakagami-n fading ch...
The severity of fading on mobile communication channels calls for the combining of multiple diversit...
The severity of fading on mobile communication channels calls for the combining of multiple diversit...
In this article, we have studied the statistical properties of the instantaneous channel capacitya o...
[[abstract]]We consider a hybrid selection/maximal-ratio combining (HS/MRC) diversity system and ass...