20202020 International Conference on Computing, Networking and Communications (ICNC)Requires access

Performance Analysis of Filter Bank Multicarrier Spread Spectrum with Biorthogonal Signaling

David B. Haab, Hussein Moradi, Tom V. Holschuh, Behrouz Farhang‐Boroujeny

Open publisher page 6 citations

Abstract

Filter bank multicarrier spread spectrum (FBMCSS) has proven to be a robust and reliable waveform choice for communication in harsh channels. In previous works, the impact of channel frequency selectivity on the M-PSK FBMC-SS waveform has been studied, and it has been found that it results in a relatively low performance degradation. This paper extends this theory to FBMC-SS with biorthogonal signaling - a spread spectrum signaling method which increases the spectral efficiency while improving on Eb/N0. Presented theory is confirmed with simulated results, and found that the behavior follows that of the M-PSK case.

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What this paper is about

Filter bank multicarrier spread spectrum (FBMCSS) has proven to be a robust and reliable waveform choice for communication in harsh channels. In previous works, the impact of channel frequency selectivity on the M-PSK FBMC-SS waveform has been studied, and it has been found that it results in a relatively low performance degradation. This paper extends this theory to FBMC-SS with biorthogonal signaling - a spread spectrum signaling method which increases the spectral efficiency while improving on Eb/N0. Presented theory is confirmed with simulated results, and found that the behavior follows that of the M-PSK case.

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OpenAlex reports 6 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Filter bank multicarrier spread spectrum (FBMCSS) has proven to be a robust and reliable waveform choice for communication in harsh channels. In previous works, the impact of channel frequency selectivity on the M-PSK FBMC-SS waveform has been studied, and it has been found that it results in a relatively low performance degradation. This paper extends this theory to FBMC-SS with biorthogonal signaling - a spread spectrum signaling method which increases the spectral efficiency while improving on Eb/N0. Presented theory is confirmed with simulated results, and found that the behavior follows that of the M-PSK case.

Key concepts: Biorthogonal system, Filter bank, Waveform, Computer science, Spectrum (functional analysis), Degradation (telecommunications), Filter (signal processing), Algorithm

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