Title :
A multistep linear prediction approach to blind asynchronous CDMA channel estimation and equalization
Author :
Tugnait, Jitendra K. ; Li, Tong-tong
Author_Institution :
Dept. of Electr. & Comput. Eng., Auburn Univ., AL, USA
fDate :
6/1/2001 12:00:00 AM
Abstract :
A multistep linear prediction approach is presented for blind channel estimation, multiuser interference (MUI) suppression, and detection of asynchronous short-code direct sequence code division multiple access signals in multipath channels. Only the spreading code of the desired user is assumed to be known; its transmission delay may be unknown. We exploit the previously proposed multistep linear prediction approach for blind multiple-input multiple-output channel estimation in conjunction with the structure imposed by the desired user´s spreading code sequence. With the knowledge of the desired user´s code sequence, only the second-order statistics of the data are needed under certain sufficient conditions on the underlying multiuser MIMO transfer function. Based on the desired user´s channel estimate, a linear minimum mean square error filter is designed for simultaneous equalization and MUI suppression. Three illustrative simulation examples are presented
Keywords :
MIMO systems; blind equalisers; code division multiple access; delays; filtering theory; interference suppression; mean square error methods; multipath channels; multiuser channels; parameter estimation; prediction theory; radiofrequency interference; signal detection; spread spectrum communication; MIMO channel estimation; asynchronous short-code DS-CDMA signals detection; blind asynchronous CDMA channel equalization; blind asynchronous CDMA channel estimation; blind multiple-input multiple-output channel estimation; direct sequence code division multiple access; linear minimum mean square error filter; multipath channels; multistep linear prediction; multiuser MIMO transfer function; multiuser interference suppression; second-order statistics; simulation; spreading code sequence; sufficient conditions; transmission delay; Blind equalizers; Channel estimation; Delay; Direct-sequence code-division multiple access; Interference suppression; MIMO; Multiaccess communication; Multipath channels; Statistics; Sufficient conditions;
Journal_Title :
Selected Areas in Communications, IEEE Journal on