DocumentCode :
1125782
Title :
A digital DS spread-spectrum receiver with joint channel and Doppler shift estimation
Author :
Iltis, Ronald A. ; Fuxjaeger, Alfred W.
Author_Institution :
Dept. of Electr. & Comput Eng., California Univ., Santa Barbara, CA, USA
Volume :
39
Issue :
8
fYear :
1991
fDate :
8/1/1991 12:00:00 AM
Firstpage :
1255
Lastpage :
1267
Abstract :
A digital spread-spectrum receiver design is presented for communication over multipath channels with severe Doppler shifts. The characteristics of the underwater channel relevant to spread-spectrum system design are discussed, and a channel model for short-range communications (less than 10 km) is defined. The receiver considered uses a digital coherent RAKE combiner, coupled with an extended Kalman filter (EKF)-based estimator for channel parameters and pseudonoise code delay. Receiver performance is evaluated by computing average bit-error rate (BER) versus iterations of the EKF joint estimator, using both fixed and time-varying channels. It is shown that the BER obtained using the EKF joint estimator closely tracks the optimum BER obtained when the channel, delay, and Doppler parameters are known exactly. Finally, the Cramer-Rao lower bound for time-invariant joint channel, delay, and Doppler estimation is derived, and compared with the ensemble averaged mean-squared error of the EKF estimator
Keywords :
Doppler effect; digital radio systems; parameter estimation; radio receivers; signal processing; spread spectrum communication; Cramer-Rao lower bound; Doppler shift estimation; average bit-error rate; channel model; digital coherent RAKE combiner; digital spread-spectrum receiver design; extended Kalman filter; joint estimator; mean-squared error; multipath channels; pseudonoise code delay; short-range communications; signal processing; time-invariant joint channel; time-varying channels; underwater channel; Bandwidth; Bit error rate; Delay estimation; Doppler shift; Fading; Frequency; Mobile communication; RAKE receivers; Spread spectrum communication; Underwater acoustics;
fLanguage :
English
Journal_Title :
Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
0090-6778
Type :
jour
DOI :
10.1109/26.134015
Filename :
134015
Link To Document :
بازگشت