Phase diversity coherent systems are gaining increasing interest with the increase of the bit rate in optical transmissions. In this work, an accurate approach for the evaluation of the error probability in ASK phase-diversity lightwave systems is presented. The approach is based on a Gaussian quadrature rule integration, which takes into account the exact characterization of the filtered phase noise through its moments. The effects of the laser linewidth on the error probability for hybrid circuits with different number of ports are derived and discussed. Also, the effects of the frequency offset are considere
International audienceIn this paper, we develop a unified theoretical framework for analyzing the ou...
International audienceIn this paper, we develop a unified theoretical framework for analyzing the ou...
International audienceIn this paper, we develop a unified theoretical framework for analyzing the ou...
An accurate performance evaluation approach which uses a closed-form exact analytical expression of ...
In this work we evaluate the impairments due to laser phase noise in multichannel coherent optical s...
A direct and efficient method for evaluation of the error probability of optical heterodyne receiver...
The purpose of this research project is to assess characteristics of communication systems hardware ...
We revisit the problem of evaluating the performances of communication systems with optical amplifie...
We revisit the problem of evaluating the performances of communication systems with optical amplifie...
The fundamental difference between coherent optical communication systems and direct detection optic...
[[abstract]]The impact of local oscillator intensity noise on the performance of an optical phase-di...
Demands for higher transmission rates are ever increasing as a result of requirements imposed by a n...
We analyzed the methods for reducing the impact of noise and interference, the performance of digita...
A novel approach to analytically evaluate the bit error probability in optically preamplified direct...
A novel approach to analytically evaluate the bit error probability in optically preamplified direct...
International audienceIn this paper, we develop a unified theoretical framework for analyzing the ou...
International audienceIn this paper, we develop a unified theoretical framework for analyzing the ou...
International audienceIn this paper, we develop a unified theoretical framework for analyzing the ou...
An accurate performance evaluation approach which uses a closed-form exact analytical expression of ...
In this work we evaluate the impairments due to laser phase noise in multichannel coherent optical s...
A direct and efficient method for evaluation of the error probability of optical heterodyne receiver...
The purpose of this research project is to assess characteristics of communication systems hardware ...
We revisit the problem of evaluating the performances of communication systems with optical amplifie...
We revisit the problem of evaluating the performances of communication systems with optical amplifie...
The fundamental difference between coherent optical communication systems and direct detection optic...
[[abstract]]The impact of local oscillator intensity noise on the performance of an optical phase-di...
Demands for higher transmission rates are ever increasing as a result of requirements imposed by a n...
We analyzed the methods for reducing the impact of noise and interference, the performance of digita...
A novel approach to analytically evaluate the bit error probability in optically preamplified direct...
A novel approach to analytically evaluate the bit error probability in optically preamplified direct...
International audienceIn this paper, we develop a unified theoretical framework for analyzing the ou...
International audienceIn this paper, we develop a unified theoretical framework for analyzing the ou...
International audienceIn this paper, we develop a unified theoretical framework for analyzing the ou...