Title :
An improved blind adaptive MMSE receiver for fast fading DS-CDMA channels
Author :
Chen, Wanshi ; Mitra, Urbashi
Author_Institution :
Ericsson Wireless Commun., San Diego, CA, USA
fDate :
8/1/2001 12:00:00 AM
Abstract :
Blind adaptive minimum mean-squared errors (MMSE) receivers for multiuser direct-sequence code-division multiple access (DS-CDMA) systems that assume knowledge of the steering vector, i.e., the cross-correlation between the desired output and the input signal, are known for their robustness against channel fading as they do not attempt to explicitly track the channel of the user of interest. However, these receivers often have higher excess mean squared error and, hence, poorer performance than training-sequence based adaptive MMSE receivers. In this paper, an improved correlation matrix estimation scheme for blind adaptive MMSE receivers is provided. The new scheme takes advantage of the fact that the desired linear receiver can be expressed as a function of the interference correlation matrix only, rather than the total data correlation matrix. A theoretical analysis is performed for the flat fading case which predicts that the new estimation scheme will result in significant performance improvement. Blind adaptive MMSE receivers with the new estimation scheme appear to achieve performance comparable to the training-sequence based adaptive MMSE receivers. Detailed computer simulations for the fast multipath fading environment verify that the proposed scheme yields strong performance gains over previous methods
Keywords :
adaptive estimation; code division multiple access; correlation theory; fading channels; interference (signal); least mean squares methods; matrix algebra; multipath channels; spread spectrum communication; channel fading; correlation matrix estimation scheme; fast fading DS-CDMA channels; fast multipath fading; improved blind adaptive MMSE receiver; interference correlation matrix; linear receiver; performance; Delay; Detectors; Direct-sequence code-division multiple access; Fading; Interference; Multiaccess communication; Phase estimation; Robustness; Timing; Vectors;
Journal_Title :
Selected Areas in Communications, IEEE Journal on