In this letter, we derive an exact and general closed-form expression for the bit error rate (BER) of Gray coded M-ary phase shift keying (MPSK) in the presence of a fixed phase error. We also propose a very simple and tight approximate expression from the derived exact expression. To validate the exactness of the proposed exact and general expression and the tightness of the proposed approximation, we compare the results obtained from the proposed expressions with those from computer simulations. We also present the average BER results of MPSK for random phase errors caused by phase-locked loop or imperfect channel estimation by using the derived expressions.This research was partially supported by the MKE, Korea, under the CITRC support p...
Inspired by the low-difficulty of implementing a dual-branch selection combining (SC) technique, thi...
This paper presents closed form expressions to evaluate the average bit error rate (BER) for coheren...
Abstract—Closed-form expressions of the bit error rate (BER) are derived for space-time block codes ...
This paper provides a new, exact, and general expression involving 1-D and 2-D Q-functions for the b...
In mobile communication systems, one of the most significant factors of the bit-error-rate (BER) per...
Abstract This letter derives an approximate average bit error rate (BER) expression of M‐ary phase s...
The problem of calculating the average bit-error probability (BEP) of coherent M-ary phase-shift key...
This paper addresses the problem of evaluating the bit-error probability of the individual bits of a...
This paper addresses the problem of evaluating the bit-error probability of the individual bits of a...
Phase error in communications systems degrades error performance. In this paper, we present a simple...
The bit error rate (BER) performance loss of M-ary differential phase-shift keying (MDPSK) with resp...
The error performance of coherent detection of binary phase shift keying (BPSK) signals with noisy p...
A performance characteristic of M-ary phase shift keying (MPSK) receivers is the variance of the pha...
This letter presents an alternative analytical expression for computing the probability of an M-ary ...
Closed-form expressions of bit error rate (BER) are derived for space-time block codes (STBC) based ...
Inspired by the low-difficulty of implementing a dual-branch selection combining (SC) technique, thi...
This paper presents closed form expressions to evaluate the average bit error rate (BER) for coheren...
Abstract—Closed-form expressions of the bit error rate (BER) are derived for space-time block codes ...
This paper provides a new, exact, and general expression involving 1-D and 2-D Q-functions for the b...
In mobile communication systems, one of the most significant factors of the bit-error-rate (BER) per...
Abstract This letter derives an approximate average bit error rate (BER) expression of M‐ary phase s...
The problem of calculating the average bit-error probability (BEP) of coherent M-ary phase-shift key...
This paper addresses the problem of evaluating the bit-error probability of the individual bits of a...
This paper addresses the problem of evaluating the bit-error probability of the individual bits of a...
Phase error in communications systems degrades error performance. In this paper, we present a simple...
The bit error rate (BER) performance loss of M-ary differential phase-shift keying (MDPSK) with resp...
The error performance of coherent detection of binary phase shift keying (BPSK) signals with noisy p...
A performance characteristic of M-ary phase shift keying (MPSK) receivers is the variance of the pha...
This letter presents an alternative analytical expression for computing the probability of an M-ary ...
Closed-form expressions of bit error rate (BER) are derived for space-time block codes (STBC) based ...
Inspired by the low-difficulty of implementing a dual-branch selection combining (SC) technique, thi...
This paper presents closed form expressions to evaluate the average bit error rate (BER) for coheren...
Abstract—Closed-form expressions of the bit error rate (BER) are derived for space-time block codes ...