Title :
Active noise blocking: Non-minimal modeling, robust control, and implementation
Author :
Yucelen, Tansel ; Pourboghrat, Farzad
Author_Institution :
Sch. of Aerosp. Eng., Georgia Inst. of Technol., Atlanta, GA, USA
Abstract :
This paper presents a new modeling and robust control approach for active noise blocking (ANB). The proposed modeling technique is based on a new non-minimal state-space realization (NSSR) of continuous-time multiple-input multiple-output (MIMO) linear time-invariant (LTI) systems. The NSSR model generates a non-minimal set of states for a given system, using measured inputs and outputs, without differentation. From the NSSR model, using an Hinfin model reduction technique, a reduced-order state space (RSS) model is derived with known states. A multi-model Hinfin state-feedback (MHSF) control is then designed, in an LMI framework, for multiple RSS models of the system. This control design has an increased robustness against modeling uncertainty when different frequency responses of the system belong to a bounded convex set. Hardware experiments using a digital signal processor (DSP) have been carried out in order to verify the applicability and the performance of the proposed NSSR-based modeling and vibration control of a plate for active noise blocking (ANB) in a 3D acoustic enclosure.
Keywords :
Hinfin control; Kalman filters; MIMO systems; active noise control; continuous time filters; control system synthesis; frequency response; linear matrix inequalities; linear systems; parameter estimation; reduced order systems; robust control; state feedback; state-space methods; uncertain systems; 3D acoustic enclosure; DSP; Hinfin model reduction technique; LMI framework; MIMO LTI system; NSSR model; active noise blocking; bounded convex set; continuous-time Kalman filter parameter estimation; continuous-time multiple-input multiple-output linear time-invariant system; digital signal processor; frequency response; multimodel Hinfin state-feedback control design; nonminimal modeling; nonminimal state-space realization; plate vibration control; reduced-order state space model; robust control approach; uncertainty robustness; Active noise reduction; Control design; Digital signal processors; Frequency; Hardware; MIMO; Reduced order systems; Robust control; State-space methods; Uncertainty;
Conference_Titel :
American Control Conference, 2009. ACC '09.
Conference_Location :
St. Louis, MO
Print_ISBN :
978-1-4244-4523-3
Electronic_ISBN :
0743-1619
DOI :
10.1109/ACC.2009.5160439