We propose an autoencoding sequence-based transceiver for communication over dispersive channels with intensity modulation and direct detection (IM/DD), designed as a bidirectional deep recurrent neural network (BRNN). The receiver uses a sliding window technique to allow for efficient data stream estimation. We find that this sliding window BRNN (SBRNN), based on end-to-end deep learning of the communication system, achieves a significant bit-error-rate reduction at all examined distances in comparison to previous block-based autoencoders implemented as feed-forward neural networks (FFNNs), leading to an increase of the transmission distance. We also compare the end-to-end SBRNN with a state-of-the-art IM/DD solution based on two level pul...
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...
We investigate end-to-end optimized optical transmission systems based on feedforward or bidirection...
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...
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...
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...
We investigate end-to-end optimized optical transmission systems based on feedforward or bidirection...
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...
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...
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...
We investigate end-to-end optimized optical transmission systems based on feedforward or bidirection...