Linearly time-varying fading models are used to investigate noncoherent detection of FSK signals transmitted over frequency-flat fading channels. The structure of the optimal noncoherent FSK detector is derived and a novel analytical technique is proposed to compute the error performance of noncoherent FSK detectors in fast fading. Error performance results obtained by computer simulation are in excellent agreement with the analytical predictions.

Noncoherent detection of FSK signals transmitted over linearly time-selective Rayleigh fading channels / Vitetta Giorgio, M.; Mengali, Umberto; Taylor Desmond, P.. - 2:(1997), pp. 904-908. (Intervento presentato al convegno Proceedings of the 1997 IEEE International Conference on Communications, ICC. Part 3 (of 3) tenutosi a Montreal, Can, nel 1997).

Noncoherent detection of FSK signals transmitted over linearly time-selective Rayleigh fading channels

Vitetta Giorgio M.;
1997

Abstract

Linearly time-varying fading models are used to investigate noncoherent detection of FSK signals transmitted over frequency-flat fading channels. The structure of the optimal noncoherent FSK detector is derived and a novel analytical technique is proposed to compute the error performance of noncoherent FSK detectors in fast fading. Error performance results obtained by computer simulation are in excellent agreement with the analytical predictions.
1997
Proceedings of the 1997 IEEE International Conference on Communications, ICC. Part 3 (of 3)
Montreal, Can,
1997
2
904
908
Vitetta Giorgio, M.; Mengali, Umberto; Taylor Desmond, P.
Noncoherent detection of FSK signals transmitted over linearly time-selective Rayleigh fading channels / Vitetta Giorgio, M.; Mengali, Umberto; Taylor Desmond, P.. - 2:(1997), pp. 904-908. (Intervento presentato al convegno Proceedings of the 1997 IEEE International Conference on Communications, ICC. Part 3 (of 3) tenutosi a Montreal, Can, nel 1997).
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11380/1249081
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