We report for the first time the experimental demonstration of doubly differential quadrature phase shift keying (DDQPSK) using optical coherent detection. This method is more robust against high frequency offsets (FO) than conventional single differential quadrature phase shift keying (SDQPSK) with offset compensation. DDQPSK is shown to be able to compensate large FOs (up to the baud rate) and has lower computational requirements than other FO compensation methods. DDQPSK is a simple algorithm to implement in a real-time decoder for optical burst switched network scenarios. Simulation results are also provided, which show good agreement with the experimental results for both SDQPSK and DDQPSK transmissions
Polarization-switched quadrature phase-shift keying has been demonstrated experimentally at 40.5Gb/s...
Nonlinear phase noise (Gordon-Mollenauer phase noise) can limit the transmission distance for phase-...
Nonlinear phase noise (Gordon-Mollenauer phase noise) can limit the transmission distance for phase-...
We report for the first time the experimental demonstration of doubly differential quadrature phase ...
We report for the first time the experimental demonstration of doubly differential quadrature phase ...
We demonstrate that doubly differential decoding can demodulate phase shift keyed data much faster a...
We demonstrate that doubly differential decoding can demodulate phase shift keyed data much faster a...
In this paper we will demonstrate the improved BER performance of doubly differential phase shift ke...
In this paper we will demonstrate the improved BER performance of doubly differential phase shift ke...
We numerically demonstrate a nonamplified 100-Gb/s doubly differential QPSK signal transmission over...
We numerically demonstrate a nonamplified 100-Gb/s doubly differential QPSK signal transmission over...
We numerically demonstrate a nonamplified 100-Gb/s doubly differential QPSK signal transmission over...
Polarization-switched quadrature phase-shift keying has been demonstrated experimentally at 40.5Gb/s...
Polarization-switched quadrature phase-shift keying has been demonstrated experimentally at 40.5Gb/s...
Nonlinear phase noise (Gordon-Mollenauer phase noise) can limit the transmission distance for phase-...
Polarization-switched quadrature phase-shift keying has been demonstrated experimentally at 40.5Gb/s...
Nonlinear phase noise (Gordon-Mollenauer phase noise) can limit the transmission distance for phase-...
Nonlinear phase noise (Gordon-Mollenauer phase noise) can limit the transmission distance for phase-...
We report for the first time the experimental demonstration of doubly differential quadrature phase ...
We report for the first time the experimental demonstration of doubly differential quadrature phase ...
We demonstrate that doubly differential decoding can demodulate phase shift keyed data much faster a...
We demonstrate that doubly differential decoding can demodulate phase shift keyed data much faster a...
In this paper we will demonstrate the improved BER performance of doubly differential phase shift ke...
In this paper we will demonstrate the improved BER performance of doubly differential phase shift ke...
We numerically demonstrate a nonamplified 100-Gb/s doubly differential QPSK signal transmission over...
We numerically demonstrate a nonamplified 100-Gb/s doubly differential QPSK signal transmission over...
We numerically demonstrate a nonamplified 100-Gb/s doubly differential QPSK signal transmission over...
Polarization-switched quadrature phase-shift keying has been demonstrated experimentally at 40.5Gb/s...
Polarization-switched quadrature phase-shift keying has been demonstrated experimentally at 40.5Gb/s...
Nonlinear phase noise (Gordon-Mollenauer phase noise) can limit the transmission distance for phase-...
Polarization-switched quadrature phase-shift keying has been demonstrated experimentally at 40.5Gb/s...
Nonlinear phase noise (Gordon-Mollenauer phase noise) can limit the transmission distance for phase-...
Nonlinear phase noise (Gordon-Mollenauer phase noise) can limit the transmission distance for phase-...