Probabilistic shaping of quadrature amplitude modulation (QAM) is used to enhance the sensitivity of an optical communication system. Sensitivity gains of 0.43 and 0.8 dB are demonstrated in back-to-back experiments by the shaping of 16QAM and 64QAM, respectively. Furthermore, numerical simulations are used to prove the robustness of probabilistic shaping to a mismatch between the constellation used and the signal-to-noise ratio (SNR) of the channel. It is found that, accepting a 0.1-dB SNR penalty, only four shaping distributions are required to support these gains for 64QAM
We experimentally demonstrate the rate/reach adaptability of probabilistically constellation-shaped ...
The probability distribution of probabilistic shaping 64 quadrature amplitude modulation (PS-64QAM) ...
shaped orthogonal frequency multiplexed (OFDM) modulation is presented. The average symbol energy of...
Probabilistic shaping of quadrature amplitude modulation (QAM) is used to enhance the sensitivity of...
Probabilistic shaping of quadrature amplitude modulation (QAM) is used to enhance the sensitivity of...
We introduce and compare typical shaping schemes suitable for optical communications. The geometrica...
We propose a universal distribution matcher applicable to any two-dimensional signal constellation. ...
Different aspects of probabilistic shaping for a multispan optical communication system are studied....
This paper studies the impact of probabilistic shaping on effective signal-to-noise ratios (SNRs) an...
In this paper, we simulated the ADC/DAC resolution tolerance improvement by implementing probabilist...
Probabilistic shaping (PS) is a promising technique to approach the Shannon limit. In this paper, we...
In this letter, probabilistic amplitude shaping (PAS) is performed in the case of orthogonal frequen...
A new probabilistic shaping distribution that outperforms Maxwell-Boltzmann is studied for the nonli...
• Higher spectral efficiencies for increased data rates • Practical limitations: • transmit power • ...
We experimentally demonstrate the rate/reach adaptability of probabilistically constellation-shaped ...
The probability distribution of probabilistic shaping 64 quadrature amplitude modulation (PS-64QAM) ...
shaped orthogonal frequency multiplexed (OFDM) modulation is presented. The average symbol energy of...
Probabilistic shaping of quadrature amplitude modulation (QAM) is used to enhance the sensitivity of...
Probabilistic shaping of quadrature amplitude modulation (QAM) is used to enhance the sensitivity of...
We introduce and compare typical shaping schemes suitable for optical communications. The geometrica...
We propose a universal distribution matcher applicable to any two-dimensional signal constellation. ...
Different aspects of probabilistic shaping for a multispan optical communication system are studied....
This paper studies the impact of probabilistic shaping on effective signal-to-noise ratios (SNRs) an...
In this paper, we simulated the ADC/DAC resolution tolerance improvement by implementing probabilist...
Probabilistic shaping (PS) is a promising technique to approach the Shannon limit. In this paper, we...
In this letter, probabilistic amplitude shaping (PAS) is performed in the case of orthogonal frequen...
A new probabilistic shaping distribution that outperforms Maxwell-Boltzmann is studied for the nonli...
• Higher spectral efficiencies for increased data rates • Practical limitations: • transmit power • ...
We experimentally demonstrate the rate/reach adaptability of probabilistically constellation-shaped ...
The probability distribution of probabilistic shaping 64 quadrature amplitude modulation (PS-64QAM) ...
shaped orthogonal frequency multiplexed (OFDM) modulation is presented. The average symbol energy of...