DocumentCode :
2564612
Title :
Electromechanical model-based vibration isolation using a dielectric elastomer actuator
Author :
Sarban, Rahimullah ; Jones, Richard W.
Author_Institution :
Danfoss PolyPower A/S, Nordborg, Denmark
fYear :
2011
fDate :
13-15 April 2011
Firstpage :
603
Lastpage :
608
Abstract :
The use of a dielectric elastomer (DE) tubular actuator for adaptive vibration isolation, where an electromechanical model of the actuator is utilised as part of the estimation scheme is examined. Active vibration isolation, with time varying loads, is considered. Adaptive estimation of a black-box cancellation path model is normally required to ensure convergence of the filtered-x least mean squares (LMS) estimated feedforward controller. Here the feasibility of using a physical-based electromechanical model of the combined DE actuator and its `sensitive´ load as the cancellation path model is investigated. The current implementation involves auto-tuning a FIR filter representation of the physical-based cancellation path model whenever a loading change in the system is detected. When the FIR filter representation has been updated the adaptive feedforward control automatically turns back on. Load sensing is required to supply a value of the time-varying load to the model.
Keywords :
FIR filters; adaptive control; electroactive polymer actuators; electromechanical actuators; feedforward; least mean squares methods; vibration control; FIR filter representation; adaptive estimation; adaptive feedforward controller; adaptive vibration isolation; black-box cancellation path model; dielectric elastomer tubular actuator; filtered-x least mean squares; load sensing; physical-based cancellation path model; physical-based electromechanical model; time varying loads; Actuators; Electrodes; Feedforward neural networks; Finite impulse response filter; Instruments; Polymers; Vibrations; Vibration isolation; cancellation path modelling; electromechanical model dielectric elastomer; feedforward adaptive control;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Mechatronics (ICM), 2011 IEEE International Conference on
Conference_Location :
Istanbul
Print_ISBN :
978-1-61284-982-9
Type :
conf
DOI :
10.1109/ICMECH.2011.5971187
Filename :
5971187
Link To Document :
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