Title :
Blockwise subspace identification for active noise control
Author :
Fraanje, P.R. ; Verhaegen, M. ; Doelman, N.J.
Author_Institution :
Syst. & Control Eng. Div., Twente Univ., Enschede, Netherlands
Abstract :
In this paper, a subspace identification solution is provided for active noise control (ANC) problems. The solution is related to so-called block updating methods, where instead of updating the (feedforward) controller on a sample by sample base, it is updated each time based on a block of N samples. The use of the subspace identification based ANC methods enables non-iterative derivation and updating of MIMO compact state space models for the controller. The robustness property of subspace identification methods forms the basis of an accurate model updating mechanism, using small size data batches. The design of a feedforward controller via the proposed approach is illustrated for an acoustic duct benchmark problem, supplied by TNO Institute of Applied Physics (TNO-TPD), the Netherlands. We also show how to cope with intrinsic feedback. A comparison study with various ANC schemes, such as block filtered-U, demonstrates the increased robustness of a subspace derived controller
Keywords :
MIMO systems; active noise control; feedforward; identification; stability; state-space methods; vibration control; MIMO systems; acoustic duct; active noise control; block updating; feedforward; robustness; state space models; subspace identification; vibration control; Acoustic noise; Active noise reduction; Ducts; Feedback; Finite impulse response filter; Least squares approximation; Noise figure; Noise measurement; Physics; Vibration control;
Conference_Titel :
Decision and Control, 2000. Proceedings of the 39th IEEE Conference on
Conference_Location :
Sydney, NSW
Print_ISBN :
0-7803-6638-7
DOI :
10.1109/CDC.2000.914158