Son, Hung Le; Schwarz, Robert T.; Knopp, Marcus T.; Giggenbach, Dirk; Knopp, Andreas
Dokumenttyp:
Konferenzbeitrag / Conference Paper
Titel:
Modeling of Scintillation and Phase Fluctuations in MIMO Laser Downlink Scenarios
Titel Konferenzpublikation:
2023 IEEE International Conference on Space Optical Systems and Applications (ICSOS)
Veranstalter (Körperschaft):
IEEE Communications Society
Konferenztitel:
International Conference on Space Optical Systems and Applications (2023, Vancouver)
Tagungsort:
Vancouver, BC, Canada
Jahr der Konferenz:
2023
Datum Beginn der Konferenz:
11.10.2023
Datum Ende der Konferenz:
13.10.2023
Verlagsort:
Piscataway, NJ
Verlag:
IEEE
Jahr:
2023
Seiten von - bis:
128-131
Sprache:
Englisch
Abstract:
Scintillation and phase fluctuations are two major challenges in free-space optical communications (FSOC). The variations in channel characteristics caused by scintillation and phase fluctuations set technical limits for the design of a multiple-input multiple-output (MIMO) FSOC communication system. In this paper, we propose a Scintillation and Phase fluctuations Time series Generator (SPTG) that models the correlated scintillation and phase fluctuations on multiple adjacent propagation paths. Different correlation coefficients between the MIMO paths can be modeled in order to reflect various scenarios and associated channels. The SPTG will help further investigate the influence of channel temporal and spatial correlation and support MIMO FSOC transceiver designs. «
Scintillation and phase fluctuations are two major challenges in free-space optical communications (FSOC). The variations in channel characteristics caused by scintillation and phase fluctuations set technical limits for the design of a multiple-input multiple-output (MIMO) FSOC communication system. In this paper, we propose a Scintillation and Phase fluctuations Time series Generator (SPTG) that models the correlated scintillation and phase fluctuations on multiple adjacent propagation paths.... »