DocumentCode :
1557255
Title :
Channel tracking for RAKE receivers in closely spaced multipath environments
Author :
Fock, Gunnar ; Baltersee, Jens ; Schulz-Rittich, Peter ; Meyr, Heinrich
Author_Institution :
Integrated Syst. for Signal Process. Lab., Aachen Univ. of Technol. (RWTH), Germany
Volume :
19
Issue :
12
fYear :
2001
fDate :
12/1/2001 12:00:00 AM
Firstpage :
2420
Lastpage :
2431
Abstract :
This paper deals with the problem of channel tracking for RAKE receivers in propagation environments characterized by closely spaced multipath components. After outlining why conventional single-path channel tracking algorithms fail in such scenarios, several new estimation algorithms are developed that are tailored to channels with closely spaced multipaths. This is achieved by removing or minimizing self-interference caused by multipath components. Other interfering users are treated as noise. Both timing tracking and phasor tracking and their interaction are covered in this paper. The derived algorithms are benchmarked against perfect channel knowledge on one hand and conventional tracking algorithms on the other hand, both in a UMTS test scenario. In moderate scenarios, the use of these new algorithms leads to performance improvements of up to 2 dB, in terms of signal-to-noise ratio (SNR) at moderate bit error rates, and even manages to track the channel in conditions where conventional tracking algorithms fail completely
Keywords :
code division multiple access; delay estimation; error statistics; interference suppression; land mobile radio; multipath channels; multiuser channels; noise; phase estimation; radio receivers; radio tracking; radiofrequency interference; spread spectrum communication; timing; BER; CDMA; RAKE receivers; SNR; UNITS; bit error rates; channel tracking; closely spaced multipath environments; code-division multiple access; estimation algorithms; fading coefficients; interference cancellation; interference minimization; multipath delay estimation; noise; perfect channel knowledge; phasor estimation; phasor tracking; propagation environments; self-interference; signal-to-noise ratio; single-path channel tracking algorithms; timing estimation; timing tracking; tracking algorithms; 3G mobile communication; Benchmark testing; Fading; Interference cancellation; Multiaccess communication; Multipath channels; Phase estimation; RAKE receivers; Signal processing algorithms; Timing;
fLanguage :
English
Journal_Title :
Selected Areas in Communications, IEEE Journal on
Publisher :
ieee
ISSN :
0733-8716
Type :
jour
DOI :
10.1109/49.974607
Filename :
974607
Link To Document :
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