User: Guest  Login
Sort by:
and:
More ...

Plabst, D.; Prinz, T.; Diedolo, F.; Wiegart, T.; Böcherer, G.; Hanik, N.; Kramer, G.
Neural network equalizers and successive interference cancellation for bandlimited channels with a nonlinearity
IEEE Intl. Symp. Inf. Theory
2024

More ...

Plabst, D.; Prinz, T.; Diedolo, F.; Wiegart, T.; Boecherer, G.; Hanik, N.; Kramer, G.
Neural Network-Based Successive Interference Cancellation for Non-Linear Bandlimited Channels
IEEE Trans. Commun.
2024
Aug

More ...

Prinz, T.; Plabst, D.; Wiegart, T.; Calabrò, S.; Hanik, N.; Kramer, G.
Successive Interference Cancellation for Bandlimited Channels with Direct Detection
IEEE Transactions on Communications
2024
72
Mar
1330-1340

More ...

Prinz, T.; Wiegart, T.; Plabst, D.; Rahman, T.; Hossain, S.; Stojanović, N.; Calabrò, S.; Hanik, N.; Kramer, G.
Comparison of PAM-6 Modulations for Short-Reach Fiber-Optic Links with Intensity Modulation and Direct Detection
European Conference on Optical Communication (ECOC) 2022
2022

More ...

Wiegart, T.; Plabst, D.; Prinz, T.; Rahman, T.; Schädler, M.; Stojanović, N.; Calabrò, S.; Hanik, N.; Kramer, G.
Experiments on Bipolar Transmission with Direct Detection
European Conference on Optical Communication (ECOC) 2022
2022

More ...

Runge, C.;Wiegart, T.;Lentner, D.;Prinz, T.
Multilevel Binary Polar-Coded Modulation Achieving the Capacity of Asymmetric Channels
IEEE International Symposium on Information Theory (ISIT)
Espoo, Finland
2022

More ...

Huawei
Polar coding with dynamic frozen bits
2021

More ...

Plabst, D.; Prinz, T.; Wiegart, T.; Rahman, T.; Stojanovic, N.; Calabro, S.; Hanik, N.; Kramer, G.
Achievable Rates for Short-Reach Fiber-Optic Channels with Direct Detection
IEEE/OSA J. Lightw. Technol.
2022

More ...

Prinz, T.; Wiegart, T.; Plabst, D.; Calabrò, S.; Böcherer, G.; Stojanovic, N.; Rahman, T.;
PAM-6 Coded Modulation for IM/DD Channels with a Peak-Power Constraint
International Symposium on Topics in Coding (ISTC) 2021
2021

More ...

Wiegart, T.; Prinz, T.; Plabst, D.
Recovering the Phase in DD Receivers with Oversampling: A Toy Example
Huawei Joint Lab Workshop
2021