Digital nonlinearity compensation (NLC) schemes such as digital backpropagation and Volterra equalization are well known to be effective techniques in mitigating optical fiber nonlinearity, thus offering improved transmission performance. Alternatively, optical NLC, and specifically optical phase conjugation (OPC), has been proposed to relax the digital signal processing complexity. In this paper, a novel hybrid optical-digital NLC scheme combining OPC and a Volterra equalizer is proposed, termed Volterra-Assisted OPC (VAO). It has a twofold advantage: it overcomes the OPC limitation in asymmetric links and substantially enhances the performance of Volterra equalizers. When NLC is operated over the entire transmitted optical bandwidth, the ...
As the data rate of long-haul transmission links is increased, the design and realization of the tra...
We show that optical and electrical phase conjugation enable effective nonlinear compensation, The i...
Electronic phase conjugation is proposed for nonlinearity compensation in fiber communications. Cohe...
Digital nonlinearity compensation (NLC) schemes such as digital backpropagation and Volterra equaliz...
We discuss recent progress on the use of optical and digital phase conjugation techniques for nonlin...
As the demand for high data rates in optical fibre communication systems grows at an unprecedented s...
This study presents a nonlinearity mitigation technique for achieving high performance in the All-Op...
We experimentally investigate a long-distance, high-bit-rate transmission system which combines opti...
This study presents a nonlinearity mitigation technique for achieving high performance in the All-Op...
We present nonlinear impairment mitigation of wavelength division multiplexed (WDM) signals, through...
Abstract: We demonstrate the performance of a nonlinear compensation scheme based on the Volterra Se...
One of the main causes of signal degradation in high-bit-rate transmission systems is the interplay ...
This article is intended as a guide to the techniques for nonlinearity compensation in a fiber-optic...
In this paper, we report on the performance comparison of all-optical signal processing methodologie...
As the data rate of long-haul transmission links is increased, the design and realization of the tra...
We show that optical and electrical phase conjugation enable effective nonlinear compensation, The i...
Electronic phase conjugation is proposed for nonlinearity compensation in fiber communications. Cohe...
Digital nonlinearity compensation (NLC) schemes such as digital backpropagation and Volterra equaliz...
We discuss recent progress on the use of optical and digital phase conjugation techniques for nonlin...
As the demand for high data rates in optical fibre communication systems grows at an unprecedented s...
This study presents a nonlinearity mitigation technique for achieving high performance in the All-Op...
We experimentally investigate a long-distance, high-bit-rate transmission system which combines opti...
This study presents a nonlinearity mitigation technique for achieving high performance in the All-Op...
We present nonlinear impairment mitigation of wavelength division multiplexed (WDM) signals, through...
Abstract: We demonstrate the performance of a nonlinear compensation scheme based on the Volterra Se...
One of the main causes of signal degradation in high-bit-rate transmission systems is the interplay ...
This article is intended as a guide to the techniques for nonlinearity compensation in a fiber-optic...
In this paper, we report on the performance comparison of all-optical signal processing methodologie...
As the data rate of long-haul transmission links is increased, the design and realization of the tra...
We show that optical and electrical phase conjugation enable effective nonlinear compensation, The i...
Electronic phase conjugation is proposed for nonlinearity compensation in fiber communications. Cohe...