Convolutionally Coded Hopping Pattern for MFSK Modulation in Underwater Acoustic Communication

Written by fatiha_messaoud

3. November 2021

 

Autoren:

Sabah Badri-Hoeher, Lars M. Wolff

Kurzusammenfassung: 

A convolutionally coded M-ary frequency shift keying (MFSK) modulation scheme for underwater acoustic communication is introduced. It uses a rate 1/log 2 M inner convolutional code, whose coded symbols are used as transmission symbols. An interleaver in the frequency domain is applied to improve the average channel clearing time. It thereby achieves almost the same data rate as a comparable uncoded frequency hopped frequency shift keying (FH-FSK) modulation scheme, but obtains the error correcting properties of the convolutional code. Bit and packet error rates are evaluated on the additive white Gaussian noise (AWGN) channel and the so-called Watermark channel model, which is a benchmark for underwater acoustic modulation schemes based on sea trial measurements. The JANUS standard which uses convolutionally coded FH-FSK is used for comparison. On the AWGN channel, the proposed scheme achieves a gain of 4dB with respect to the required E b /N 0 for a given packet error rate (PER) compared with JANUS. In the Watermark scenarios, the best proposed-scheme achieves a PER <; 10 -3 at more than 10 dB lower E b /N 0 than the JANUS implementation.

 

Mehr dazu

Veröffentlicht in: IEEE Access ( Volume: 7)

Seiten: 95569 – 95575

DOI: 10.1109/ACCESS.2019.2924114

 

Datum der Veröffentlichung:
20. Juni 2019

Herausgeber: IEEE

 

ISBN-Informationen:

Förderer:

Land Schleswig-Holstein through the Funding Programme Open Access Publikationsfonds

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

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