We present a linear and nonlinear digital pre-distortion (DPD) tailored to the components of an optical transmitter. The DPD concept uses nonlinear models of the transmitter devices, which are obtained from direct component measurements. While the digital-to-analog converter and driver amplifier are modeled jointly by a Volterra series, the modulator is modeled independently as a Wiener system. This allows for a block-wise compensation of the modulator by a Hammerstein system and a pre-distortion of the electrical components by a second Volterra series. In simulations and extensive experiments, the performance of our approach for nonlinear DPD is compared to an equivalent linear solution as well as to a configuration without any DPD. The ex...
Fiber optic transmission systems are expected to become viable options for delivery of telephone, da...
Subcarrier multiplexing efficiently uses the available fiber bandwidth in video transmission. Semico...
A neural network-based digital pre-distortion technique is presented which compensates for the nonli...
We present a linear and nonlinear digital predistortion (DPD) tailored to the components of an optic...
Optical orthogonal frequency-division multiplexing (OOFDM) signal is sensitive to nonlinear distorti...
In this paper, a nonlinear modeling approach is used to demonstrate a joint compensation scheme for ...
Next generation bandwidth variable transponders require digital pre-compensation techniques (DPC) to...
We assess the gains in achievable information rate for 64-GBd PDM-64QAM signal transmission with Vol...
International audienceIn this communication we use macro-modeling and signal processing techniques i...
In this work we propose a pre-distortion technique for the mitigation of the nonlinear distortion pr...
Using digital distortion, the Mach-Zehnder modulator nonlinearity is pre-compensated for direct dete...
We present results of nonlinear compensation achieved by digital backward-propagation (DBP) for next...
High efficiency and good linearity are two important characteristics of transmitters in future wirel...
Fiber optic transmission systems are expected to become viable options for delivery of telephone, da...
Subcarrier multiplexing efficiently uses the available fiber bandwidth in video transmission. Semico...
A neural network-based digital pre-distortion technique is presented which compensates for the nonli...
We present a linear and nonlinear digital predistortion (DPD) tailored to the components of an optic...
Optical orthogonal frequency-division multiplexing (OOFDM) signal is sensitive to nonlinear distorti...
In this paper, a nonlinear modeling approach is used to demonstrate a joint compensation scheme for ...
Next generation bandwidth variable transponders require digital pre-compensation techniques (DPC) to...
We assess the gains in achievable information rate for 64-GBd PDM-64QAM signal transmission with Vol...
International audienceIn this communication we use macro-modeling and signal processing techniques i...
In this work we propose a pre-distortion technique for the mitigation of the nonlinear distortion pr...
Using digital distortion, the Mach-Zehnder modulator nonlinearity is pre-compensated for direct dete...
We present results of nonlinear compensation achieved by digital backward-propagation (DBP) for next...
High efficiency and good linearity are two important characteristics of transmitters in future wirel...
Fiber optic transmission systems are expected to become viable options for delivery of telephone, da...
Subcarrier multiplexing efficiently uses the available fiber bandwidth in video transmission. Semico...
A neural network-based digital pre-distortion technique is presented which compensates for the nonli...