DocumentCode
703532
Title
Relaxed look-ahead technique for pipelined implementation of adaptive multiple-antenna CDMA mobile receivers
Author
Baghaie, Ramin ; Werner, Stefan ; Laakso, Timo
Author_Institution
Lab. of Telecommun. Technol., Helsinki Univ. of Technol., Helsinki, Finland
fYear
1998
fDate
8-11 Sept. 1998
Firstpage
1
Lastpage
4
Abstract
In this paper, Relaxed Look-Ahead technique for pipelined implementation of an adaptive Direct-Sequence Code Division Multiple Access receiver is proposed when multiple antennas are utilized for mobile communications. Adaptive multiple-antenna receivers can provide insensitivity to the interfering powers. They also provide room for more users or require smaller number of antennas than the matched filter solution. A number of approximation techniques are utilized to pipeline the adaptive algorithm used for the proposed multiple-antenna receiver. The resulting pipelined receiver achieves a higher throughput or requires lower power as compared to the receiver using the serial algorithm. With the aid of simulations, for different levels of pipelining and different number of antennas, the signal-to-interference ratio and the bit error rate versus the relative interfering power are illustrated.
Keywords
approximation theory; code division multiple access; error statistics; matched filters; mobile radio; radio receivers; receiving antennas; CDMA mobile communication receivers; adaptive direct-sequence code division multiple access receiver; adaptive multiple-antenna receiver; approximation techniques; bit error rate; matched filter solution; pipelined receiver implementation; relative interfering power; relaxed look-ahead technique; serial algorithm; signal-to-interference ratio; Antennas; Approximation algorithms; Least squares approximations; Mathematical model; Pipeline processing; Receivers;
fLanguage
English
Publisher
ieee
Conference_Titel
Signal Processing Conference (EUSIPCO 1998), 9th European
Conference_Location
Rhodes
Print_ISBN
978-960-7620-06-4
Type
conf
Filename
7090003
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