This paper derives analytically some simple closed form expressions for the average symbol error rate (SER) of M-ary phase shift keying (MPSK), M-ary differential phase shift keying (MDPSK) and noncoherent M-ary frequency shift keying (MFSK) over a Nakagami-m (1960) fading channel with L-fold maximal ratio combining (MRC) and selection combining (SC) space diversity reception. Numerical results demonstrate the error performance improvement by employing MRC and SC diversity reception in the above communications systems and show that MRC improves the error performance more significantly than does simple SC.published_or_final_versio
[[abstract]]In this paper, we provide a unified analysis of average symbol error probability (SEP) f...
The physical meaning of the composite Nakagami-lognormal fading model is not well understood by many...
The physical meaning of the composite Nakagami-lognormal fading model is not well understood by many...
The average symbol error rate (SER) performance of M-ary modulation systems with space diversity ove...
Abstract—In this study, approximate symbol error rate (SER) expressions for M-ary phase shift keying...
In this paper, analysis of symbol error probability (SEP) is carried over frequency non-selective sl...
New exact expressions are derived for the symbol error rate (SER) of M-ary quadrature amplitude modu...
The comparison of symbol error probability(SEP) for different M-ary modulation techniques over slow,...
Abstract—In this paper, the performance of an uncoded multiple-input-multiple-output (MIMO) scheme c...
structure (also known as generalized selection combining) in a variety of fading environments i s an...
For the purpose of more effectively investigating the bit error-rate (BER) and symbol error-rate (SE...
For the purpose of more effectively investigating the bit error-rate (BER) and symbol error-rate (SE...
For the purpose of more effectively investigating the bit error-rate (BER) and symbol error-rate (SE...
In this paper, we develop analytical tools for the performance analysis of coded, coherent communica...
In this article, we have studied the statistical properties of the capacity of Nakagami-m channels w...
[[abstract]]In this paper, we provide a unified analysis of average symbol error probability (SEP) f...
The physical meaning of the composite Nakagami-lognormal fading model is not well understood by many...
The physical meaning of the composite Nakagami-lognormal fading model is not well understood by many...
The average symbol error rate (SER) performance of M-ary modulation systems with space diversity ove...
Abstract—In this study, approximate symbol error rate (SER) expressions for M-ary phase shift keying...
In this paper, analysis of symbol error probability (SEP) is carried over frequency non-selective sl...
New exact expressions are derived for the symbol error rate (SER) of M-ary quadrature amplitude modu...
The comparison of symbol error probability(SEP) for different M-ary modulation techniques over slow,...
Abstract—In this paper, the performance of an uncoded multiple-input-multiple-output (MIMO) scheme c...
structure (also known as generalized selection combining) in a variety of fading environments i s an...
For the purpose of more effectively investigating the bit error-rate (BER) and symbol error-rate (SE...
For the purpose of more effectively investigating the bit error-rate (BER) and symbol error-rate (SE...
For the purpose of more effectively investigating the bit error-rate (BER) and symbol error-rate (SE...
In this paper, we develop analytical tools for the performance analysis of coded, coherent communica...
In this article, we have studied the statistical properties of the capacity of Nakagami-m channels w...
[[abstract]]In this paper, we provide a unified analysis of average symbol error probability (SEP) f...
The physical meaning of the composite Nakagami-lognormal fading model is not well understood by many...
The physical meaning of the composite Nakagami-lognormal fading model is not well understood by many...