DocumentCode
3802422
Title
Linear multiuser detectors for synchronous code-division multiple-access channels
Author
R. Lupas;S. Verdu
Author_Institution
Dept. of Electr. Eng., Princeton Univ., NJ, USA
Volume
35
Issue
1
fYear
1989
Firstpage
123
Lastpage
136
Abstract
Under the assumptions of symbol-synchronous transmissions and white Gaussian noise, the authors analyze the detection mechanism at the receiver, comparing different detectors by their bit error rates in the low-background-noise region and by their worst-case behavior in a near-far environment where the received energies of the users are not necessarily similar. Optimum multiuser detection achieves important performance gains over conventional single-user detection at the expense of computational complexity that grows exponentially with the number of users. It is shown that in the synchronous case the performance achieved by linear multiuser detectors is similar to that of optimum multiuser detection. Attention is focused on detectors whose linear memoryless transformation is a generalized inverse of the matrix of signature waveform crosscorrelations, and on the optimum linear detector. It is shown that the generalized inverse detectors exhibit the same degree of near-far resistance as the optimum multiuser detectors. The optimum linear detector is obtained.
Keywords
"Detectors","Multiaccess communication","Multiuser detection","Performance gain","Constellation diagram","Additive noise","Gaussian noise","Bit error rate","Background noise","Computational complexity"
Journal_Title
IEEE Transactions on Information Theory
Publisher
ieee
ISSN
0018-9448
Type
jour
DOI
10.1109/18.42183
Filename
42183
Link To Document