The error performance of a preamplified, direct detection receiver with an optical filter of the Lorentzian type is studied. The analysis takes into account the influence of the optical intersymbol interference (ISI). A closed-form expression of the moment generating function (MGF) of the decision variable is derived. Error probabilities are evaluated from the MGF using a saddlepoint approximation. The Gaussian approximation is also examined. The detection sensitivity in terms of a quantum limit is calculated. The results show that there exists an optimum optical bandwidth, the reason being a tradeoff between the effect of ISI and the spontaneous emission noise. It is also shown that the Gaussian approximation gives a good estimate of the e...
This paper presents a novel technique that allows easy and accurate estimation of the system bit err...
Abstract—Closed-form expressions for the moment generating function (MGF) of the filtered output of ...
A comprehensive theoretical analysis of noise statistics in optically pre-amplified DPSK receivers w...
The error performance of a preamplified, direct detection receiver with an optical filter of the Lor...
We present a novel model for calculating the bit error rate in optical communication systems in the ...
This paper presents an analysis of how to calculate bit error ratio (BER) with physical explanation ...
A novel approach to analytically evaluate the bit error probability in optically preamplified direct...
Abstract In this paper, the bandwidth of the filters used in optical communication systems and syste...
An efficient method for evaluating the error probability of optical ASK/DD systems subject to interf...
We revisit the problem of evaluating the performances of communication systems with optical amplifie...
The analytical calculation of the bit error rate (BER) of digital optical receivers that employ aval...
In this paper the performances of a direct-detection receiver with optical doped fiber preamplifier ...
[[abstract]]In this paper, we provide a numerical bit error rate (BER) estimation approach for direc...
The results of a simulation study on the performance of optical receivers for direct-detection syste...
This paper presents a novel technique that allows easy and accurate estimation of the system bit err...
Abstract—Closed-form expressions for the moment generating function (MGF) of the filtered output of ...
A comprehensive theoretical analysis of noise statistics in optically pre-amplified DPSK receivers w...
The error performance of a preamplified, direct detection receiver with an optical filter of the Lor...
We present a novel model for calculating the bit error rate in optical communication systems in the ...
This paper presents an analysis of how to calculate bit error ratio (BER) with physical explanation ...
A novel approach to analytically evaluate the bit error probability in optically preamplified direct...
Abstract In this paper, the bandwidth of the filters used in optical communication systems and syste...
An efficient method for evaluating the error probability of optical ASK/DD systems subject to interf...
We revisit the problem of evaluating the performances of communication systems with optical amplifie...
The analytical calculation of the bit error rate (BER) of digital optical receivers that employ aval...
In this paper the performances of a direct-detection receiver with optical doped fiber preamplifier ...
[[abstract]]In this paper, we provide a numerical bit error rate (BER) estimation approach for direc...
The results of a simulation study on the performance of optical receivers for direct-detection syste...
This paper presents a novel technique that allows easy and accurate estimation of the system bit err...
Abstract—Closed-form expressions for the moment generating function (MGF) of the filtered output of ...
A comprehensive theoretical analysis of noise statistics in optically pre-amplified DPSK receivers w...