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Compressive demodulation of mutually interfering signals

Publication ,  Journal Article
Xie, Y; Chi, Y; Applebaum, L; Calderbank, R
Published in: 2012 IEEE Statistical Signal Processing Workshop, SSP 2012
November 6, 2012

The challenge of Multiuser Detection (MUD) is that of demodulating mutually interfering signals given that at any time instant the number of active users is typically small. The promise of compressed sensing is the demodulation of sparse superpositions of signature waveforms from very few measurements. This paper considers signature waveforms that are are drawn from a Gabor frame. It describes a MUD architecture that uses subsampling to convert analog input to a digital signal, and then uses iterative matching pursuit to recover the active users. Compressive demodulation requires K logN samples to recover K active users whereas standard MUD requires N samples. The paper provides theoretical performance guarantees and consistent numerical simulations. © 2012 IEEE.

Duke Scholars

Published In

2012 IEEE Statistical Signal Processing Workshop, SSP 2012

DOI

Publication Date

November 6, 2012

Start / End Page

592 / 595
 

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Xie, Y., Chi, Y., Applebaum, L., & Calderbank, R. (2012). Compressive demodulation of mutually interfering signals. 2012 IEEE Statistical Signal Processing Workshop, SSP 2012, 592–595. https://doi.org/10.1109/SSP.2012.6319768
Xie, Y., Y. Chi, L. Applebaum, and R. Calderbank. “Compressive demodulation of mutually interfering signals.” 2012 IEEE Statistical Signal Processing Workshop, SSP 2012, November 6, 2012, 592–95. https://doi.org/10.1109/SSP.2012.6319768.
Xie Y, Chi Y, Applebaum L, Calderbank R. Compressive demodulation of mutually interfering signals. 2012 IEEE Statistical Signal Processing Workshop, SSP 2012. 2012 Nov 6;592–5.
Xie, Y., et al. “Compressive demodulation of mutually interfering signals.” 2012 IEEE Statistical Signal Processing Workshop, SSP 2012, Nov. 2012, pp. 592–95. Scopus, doi:10.1109/SSP.2012.6319768.
Xie Y, Chi Y, Applebaum L, Calderbank R. Compressive demodulation of mutually interfering signals. 2012 IEEE Statistical Signal Processing Workshop, SSP 2012. 2012 Nov 6;592–595.

Published In

2012 IEEE Statistical Signal Processing Workshop, SSP 2012

DOI

Publication Date

November 6, 2012

Start / End Page

592 / 595