In this paper, we consider channels affected by Wiener phase noise and derive a detection algorithm that exploits oversampling at the receiver for tracking better the phase noise variations. The resulting algorithm is a multi-sample discrete-phase BCJR that outperforms receivers using a single sample per symbol and maximizes the achievable information rate over phase noise channels. Finally, we assess the suitability of the multi-sample discrete-phase BCJR for performing iterative detection and decoding with standard codes.
A multi-sample discrete-phase BCJR algorithm for phase noise channels / Ripani, Barbara; Modenini, Andrea; Montorsi, Guido. - ELETTRONICO. - (2022). (Intervento presentato al convegno Global Communications Conference (GLOBECOM) 2022 tenutosi a Rio de Janeiro, Brazil nel 04-08 December 2022) [10.1109/GLOBECOM48099.2022.10001274].
A multi-sample discrete-phase BCJR algorithm for phase noise channels
Ripani, Barbara;Montorsi, Guido
2022
Abstract
In this paper, we consider channels affected by Wiener phase noise and derive a detection algorithm that exploits oversampling at the receiver for tracking better the phase noise variations. The resulting algorithm is a multi-sample discrete-phase BCJR that outperforms receivers using a single sample per symbol and maximizes the achievable information rate over phase noise channels. Finally, we assess the suitability of the multi-sample discrete-phase BCJR for performing iterative detection and decoding with standard codes.File | Dimensione | Formato | |
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https://hdl.handle.net/11583/2970456