DocumentCode :
2233852
Title :
Transient behavior of the minimum mean-squared error receiver for direct-sequence code-division multiple-access systems
Author :
Miller, Scott L.
Author_Institution :
Dept. of Electr. Eng., Florida Univ., Gainesville, FL, USA
fYear :
1994
fDate :
2-5 Oct 1994
Firstpage :
52
Abstract :
This paper studies the transient behavior of an adaptive near-far resistant receiver for direct-sequence (DS) code-division multiple-access (CDMA) known as the minimum mean-squared error (MMSE) receiver. This receiver structure is known to be near-far resistant and yet does not require the large amounts of side information that are typically required for other near-far resistant receivers. In fact this receiver only requires code timing on the one desired signal. The MMSE receiver uses an adaptive filter which is operated in a manner similar to adaptive equalizers. Initially there is a training period where the filter locks onto the signal that is sending a known training sequence. After training the system can then switch to a decision directed mode and send actual data. This work examines the length of the training period needed as a function of the number of interfering users and the severity of the near far problem. A standard LMS algorithm is used to adapt the filter and so the trade off between convergence and excess mean squared error is studied. It is found that in almost all cases a step size near 1.0/(total input power) gives the best compromise between speed of convergence and excess mean squared error. Also, it is shown that the MMSE receiver can tolerate about 30-40 dB worth of near-far problem before the convergence time becomes unacceptable
Keywords :
adaptive filters; code division multiple access; convergence of numerical methods; least mean squares methods; pseudonoise codes; radio receivers; spread spectrum communication; transient analysis; DS-CDMA; LMS algorithm; MMSE receiver; adaptive equalizers; adaptive filter; convergence time; decision directed mode; direct-sequence code-division multiple-access; excess mean squared error; minimum mean-squared error; minimum mean-squared error receiver; near-far resistant receivers; receiver structure; step size; training period; training period length; training sequence; transient behavior; Convergence; Equalizers; Filters; Interference; Least squares approximation; Multiaccess communication; Power control; Resistance; Switches; Timing;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Military Communications Conference, 1994. MILCOM '94. Conference Record, 1994 IEEE
Conference_Location :
Fort Monmouth, NJ
Print_ISBN :
0-7803-1828-5
Type :
conf
DOI :
10.1109/MILCOM.1994.473838
Filename :
473838
Link To Document :
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