Title :
Performance analysis of the unconstrained FxLMS algorithm for active noise control
Author :
Gong, Yu ; Song, Ying ; Liu, Senjin
Author_Institution :
Sch. of Electr. Electron. Eng., Queen´´s Univ., Belfast, UK
Abstract :
The paper analyzes the performance of the unconstrained filtered-x LMS (FxLMS) algorithm for active noise control (ANC), where we remove the constraints on the controller that it must be causal and has finite impulse response. It is shown that the unconstrained FxLMS algorithm always converges to, if stable, the true optimum filter, even if the estimation of the secondary path is not perfect, and its final mean square error is independent of the secondary path. Moreover, we show that the sufficient and necessary stability condition for the feedforward unconstrained FxLMS is that the maximum phase error of the secondary path estimation must be within 90°, which is the only necessary condition for the feedback unconstrained FxLMS. The significance of the analysis on a practical system is also discussed. Finally we show how the obtained results can guide us to design a robust feedback ANC headset.
Keywords :
acoustic noise; acoustic signal processing; active noise control; convergence of numerical methods; feedback; feedforward; filtering theory; least mean squares methods; parameter estimation; active noise control; feedback ANC headset; feedforward ANC; finite impulse response; mean square error; phase error; secondary path estimation; unconstrained filtered-x LMS algorithm; Active noise reduction; Algorithm design and analysis; Feedback; Finite impulse response filter; Least squares approximation; Mean square error methods; Performance analysis; Phase estimation; Robustness; Stability;
Conference_Titel :
Acoustics, Speech, and Signal Processing, 2003. Proceedings. (ICASSP '03). 2003 IEEE International Conference on
Print_ISBN :
0-7803-7663-3
DOI :
10.1109/ICASSP.2003.1200033