DocumentCode
1230292
Title
Performance bounds on chip-matched-filter receivers for bandlimited DS/SSMA communications
Author
Jeong, Yeon Kyoon ; Cho, Joon Ho ; Lehnert, James S.
Author_Institution
Sch. of Electr. & Comput. Eng., Purdue Univ., West Lafayette, IN, USA
Volume
53
Issue
1
fYear
2005
Firstpage
131
Lastpage
141
Abstract
Performance bounds on chip-matched-filter (CMF) receivers for bandlimited direct-sequence spread-spectrum multiple-access (BL-DS/SSMA) systems with aperiodic random spreading sequences are obtained. First, the optimum transmit-receive chip waveform pairs that maximize the conditional signal-to-interference ratio are derived. This leads to performance bounds on CMF receivers when the conditional Gaussian approximation for cyclostationary multiple-access interference (MAI) is exploited. The bounds are used to examine the dependence of the MAI suppression capability of the CMF receivers on the excess bandwidth of the system and the delay profile of multiple-access users. The system employing the flat-spectrum chip waveform pair is shown to have near-optimum average bit-error rate performance among the fixed CMF (FCMF) receiver systems. Numerical results are provided for an adaptive CMF receiver and for FCMF receivers employing several different fixed chip waveforms.
Keywords
Gaussian processes; error statistics; interference suppression; matched filters; radio receivers; radiofrequency interference; random sequences; spread spectrum communication; MAI suppression; bandlimited DS-SSMA communication; chip-matched-filter receiver; conditional Gaussian approximation; conditional signal-to-interference ratio; cyclostationary multiple-access interference; direct-sequence spread-spectrum multiple-access system; flat-spectrum chip waveform; near-optimum average bit-error rate performance; optimum transmit-receive chip waveform; periodic random spreading sequence; Background noise; Bandwidth; Bit error rate; Gaussian approximation; Interference constraints; Interference suppression; Multiple access interference; Signal design; Signal to noise ratio; Spread spectrum communication;
fLanguage
English
Journal_Title
Communications, IEEE Transactions on
Publisher
ieee
ISSN
0090-6778
Type
jour
DOI
10.1109/TCOMM.2004.840626
Filename
1391198
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