Title :
Virtual error approach to nonlinear adaptive filtering for parallel hammerstein systems
Author :
Ohno, Tomohiro ; Sano, Akira
Author_Institution :
Dept. of Syst. Design Eng., Keio Univ., Yokohama, Japan
Abstract :
A novel virtual error approach is proposed for fully adaptive feedforward compensation/equalization, which is useful in nonlinear active noise control and predistortion for nonlinear high power amplifier (HPA). To attenuate the compensation error, two kinds of virtual error are introduced and are forced into zero by adjusting three nonlinear adaptive filters in an on-line manner. It is shown that the convergence of the compensation error to zero can be assured by forcing the virtual errors to zero separately. The proposed method can adjust the predistorter directly without identification of a post-inverse model of HPA as adopted in previous predistortion methods. The effectiveness of the proposed virtual error approach is validated in numerical simulation with comparison to an ordinary nonlinear filtered-x algorithm in the adaptive predistortion for nonlinear HPA used in OFDM communication systems.
Keywords :
adaptive filters; equalisers; error compensation; feedforward; nonlinear distortion; nonlinear filters; numerical analysis; power amplifiers; OFDM communication systems; adaptive predistortion method; error compensation; fully adaptive feedforward compensation-equalization; nonlinear HPA; nonlinear active noise control; nonlinear adaptive filtering; nonlinear high power amplifier; numerical simulation; ordinary nonlinear filtered-X algorithm; parallel Hammerstein systems; post-inverse model; predistortion methods; virtual error approach; Abstracts; Adaptation models; Feedforward neural networks; Legged locomotion; Prognostics and health management; Radio access networks;
Conference_Titel :
Signal Processing Conference, 2008 16th European
Conference_Location :
Lausanne