In this paper, we apply deep learning for communication over dispersive channels with power detection, as encountered in low-cost optical intensity modulation/direct detection (IMDD) links. We consider an autoencoder based on the recently proposed sliding window bidirectional recurrent neural network (SBRNN) design to realize the transceiver for optical IMDD communication. We show that its performance can be improved by introducing a weighted sequence estimation scheme at the receiver. Moreover, we perform bit-to-symbol mapping optimization to reduce the bit-error rate (BER) of the system. Furthermore, we carry out a detailed comparison with classical schemes based on pulse-amplitude modulation and maximum likelihood sequence detection (MLS...
We propose an autoencoding sequence-based transceiver for communication over dispersive channels wit...
We propose an autoencoding sequence-based transceiver for communication over dispersive channels wit...
We investigate end-to-end optimized optical transmission systems based on feedforward or bidirection...
In this paper, we apply deep learning for communication over dispersive channels with power detectio...
In this paper, we apply deep learning for communication over dispersive channels with power detectio...
In this paper, we apply deep learning for communication over dispersive channels with power detectio...
In this paper, we apply deep learning for communication over dispersive channels with power detectio...
In this paper, we apply deep learning for communication over dispersive channels with power detectio...
In this paper, we apply deep learning for communication over dispersive channels with power detectio...
In this paper, we apply deep learning for communication over dispersive channels with power detectio...
\u3cp\u3eIn this paper, we apply deep learning for communication over dispersive channels with power...
We propose an autoencoding sequence-based transceiver for communication over dispersive channels wit...
We propose an autoencoding sequence-based transceiver for communication over dispersive channels wit...
We propose an autoencoding sequence-based transceiver for communication over dispersive channels wit...
We propose an autoencoding sequence-based transceiver for communication over dispersive channels wit...
We propose an autoencoding sequence-based transceiver for communication over dispersive channels wit...
We propose an autoencoding sequence-based transceiver for communication over dispersive channels wit...
We investigate end-to-end optimized optical transmission systems based on feedforward or bidirection...
In this paper, we apply deep learning for communication over dispersive channels with power detectio...
In this paper, we apply deep learning for communication over dispersive channels with power detectio...
In this paper, we apply deep learning for communication over dispersive channels with power detectio...
In this paper, we apply deep learning for communication over dispersive channels with power detectio...
In this paper, we apply deep learning for communication over dispersive channels with power detectio...
In this paper, we apply deep learning for communication over dispersive channels with power detectio...
In this paper, we apply deep learning for communication over dispersive channels with power detectio...
\u3cp\u3eIn this paper, we apply deep learning for communication over dispersive channels with power...
We propose an autoencoding sequence-based transceiver for communication over dispersive channels wit...
We propose an autoencoding sequence-based transceiver for communication over dispersive channels wit...
We propose an autoencoding sequence-based transceiver for communication over dispersive channels wit...
We propose an autoencoding sequence-based transceiver for communication over dispersive channels wit...
We propose an autoencoding sequence-based transceiver for communication over dispersive channels wit...
We propose an autoencoding sequence-based transceiver for communication over dispersive channels wit...
We investigate end-to-end optimized optical transmission systems based on feedforward or bidirection...