Except for a few simple digital modulation techniques, derivation of average bit error probability over fading channels is difficult and is an involved process. In this letter, curve fitting technique has been employed to express bit error probabil-ity over AWGN of any digital modulation scheme in terms of a simple Gaussian function. Using this Gaussian function, a generalized closed form expression for computing average probability of bit error over Rayleigh fading channels has been derived. Excellent agreement has been found between error probabilities computed with our method and the rigorously calculated error probabilities of several digital modulation schemes.
Abstract — The performance of digital communication systems over Generalized-K (KG) fading channels ...
Analytic expressions have been derived for the probability density functions of the total signal-to-...
Abstract—Using an alternate form of the Gaussian probability integral discovered a number of years a...
In assessing the performance of wireless communication systems, various models are used to analyse t...
Several characteristics of the Rayleigh fading channel are examined. A digital Rayleigh fading simul...
The problem of computing the probability P[sub f](M,N) of more than M bit errors in a block of N bit...
In this paper, an exact expression for the average bit error probability was obtained for the lambda...
This letter investigates the average symbol error probability (ASEP) of pulse amplitude modulation a...
Presented here is a unified approach to evaluating the errorrate performance of digital communicatio...
Abstract — This letter presents a simple closed-form expression to evaluate the error probability of...
New emission limit requirements are needed to protect digital communication systems from radiated in...
Abstract — The performance of digital communication systems over Generalized-K (KG) fading channels ...
Abstract—This paper considers the average symbol error probability of square Quadrature Amplitude Mo...
Analysis of the average binary error probabilities (ABEP) and average capacity (AC) of wireless comm...
Bit error probability evaluation of Tkellis-Coded Modulation (TCM) over fading channels is rather co...
Abstract — The performance of digital communication systems over Generalized-K (KG) fading channels ...
Analytic expressions have been derived for the probability density functions of the total signal-to-...
Abstract—Using an alternate form of the Gaussian probability integral discovered a number of years a...
In assessing the performance of wireless communication systems, various models are used to analyse t...
Several characteristics of the Rayleigh fading channel are examined. A digital Rayleigh fading simul...
The problem of computing the probability P[sub f](M,N) of more than M bit errors in a block of N bit...
In this paper, an exact expression for the average bit error probability was obtained for the lambda...
This letter investigates the average symbol error probability (ASEP) of pulse amplitude modulation a...
Presented here is a unified approach to evaluating the errorrate performance of digital communicatio...
Abstract — This letter presents a simple closed-form expression to evaluate the error probability of...
New emission limit requirements are needed to protect digital communication systems from radiated in...
Abstract — The performance of digital communication systems over Generalized-K (KG) fading channels ...
Abstract—This paper considers the average symbol error probability of square Quadrature Amplitude Mo...
Analysis of the average binary error probabilities (ABEP) and average capacity (AC) of wireless comm...
Bit error probability evaluation of Tkellis-Coded Modulation (TCM) over fading channels is rather co...
Abstract — The performance of digital communication systems over Generalized-K (KG) fading channels ...
Analytic expressions have been derived for the probability density functions of the total signal-to-...
Abstract—Using an alternate form of the Gaussian probability integral discovered a number of years a...