General /spl Lscr//sup p,q/-metric estimators of arbitrary interference in communication receivers

A general /spl Lscr//sup p,q/-metric, p,q>0, on a probability space is defined and the corresponding optimality criterion derived. This criterion is applied to the estimation of complex impulsive interference in communication receivers represented by scalar state-space equations. For arbitrary i.i.d. interference sequence and any discrete-type complex signal sequence, a family of optimal /spl Lscr//sup p,q/-metric interference estimators is developed. As a test, these algorithms are applied to estimate highly impulsive state processes driven by noise with symmetric /spl alpha/-stable distribution. The new interference estimators can be incorporated in CDMA/TDMA wireless systems to suppress the multiuser interference.