A simple upper bound on the information rate (IR) of digital communications over phase noise-impaired channels is proposed. In particular, the transmission of linearly modulated signals, such as QAM, at highsignal-to-noise ratio is considered, thus extending previous literature results for phase modulated signals, e.g. PSK. A simulation-based lower bound on the IR shows that the proposed bound is tight for small-medium size constellations and large phase noise.

Simple upper bound on the information rate of the phase noise channel

Marco Martalò;
2016-01-01

Abstract

A simple upper bound on the information rate (IR) of digital communications over phase noise-impaired channels is proposed. In particular, the transmission of linearly modulated signals, such as QAM, at highsignal-to-noise ratio is considered, thus extending previous literature results for phase modulated signals, e.g. PSK. A simulation-based lower bound on the IR shows that the proposed bound is tight for small-medium size constellations and large phase noise.
2016
phase noise; quadrature amplitude modulation; digital communication; phase shift keying; simple upper bound; information rate; digital communications; phase noise‐impaired channels; QAM; linearly modulated signals; high‐signal‐to‐noise ratio; phase modulated signals; phase shift keying; simulation‐based lower bound; small‐medium size constellations
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11584/305139
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