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Digital DS-CDMA receiver working below the chip rate: theory and design

Maravic, Irena  
•
Vetterli, Martin  
2002

We consider the problem of designing low-complexity digital receivers for CDMA systems operating over channels with single or multiple propagation paths. We specifically exploit a finite rate of innovation property of CDMA signals and develop a method that leads to an efficient solution of the combined problem of multipath channel estimation and signal detection from a low-dimensional subspace of a received signal. Unlike existing schemes that typically resort to chip rate sampling and manipulate with large correlation matrices, our framework allows for digital CDMA receivers to operate at a significantly lower sampling rate, chosen to be close to a rate of innovation of a received signal. Our approach, therefore, can considerably reduce computational requirements compared to existing solutions while providing similar performances, and allows to use slower A/D converters, thus reducing power consumption.

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Type
report
Author(s)
Maravic, Irena  
•
Vetterli, Martin  
Date Issued

2002

Subjects

CDMA

•

multiuser channel estimation

•

multiuser detection

•

multipath channels

•

signals of finite rate of innovation

Written at

EPFL

EPFL units
LCAV  
Available on Infoscience
July 13, 2005
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/214517
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