DocumentCode
3455976
Title
Modelling and Simulation of Shape Memory Alloys Micro-Actuator
Author
Liang Hong ; Zeng Chunnian ; Giraud-Audine, C.
Author_Institution
Wuhan Univ. of Technol., Wuhan, China
fYear
2009
fDate
7-9 Dec. 2009
Firstpage
1405
Lastpage
1408
Abstract
In recent years, the Preisach model has emerged to capture the complex hysteresis behavior of many smart material, such as piezoceramics, shape memory alloys (SMA) and so forth. This paper addressed modeling and simulation of the micro-actuator SMA wires. We introduce the numerical implementation of the Preisach model, which avoids the double integration and using experimental data directly. For the explore of the model, the novel concept of input memory matrix MUt and output memory matrix MFt is introduced in the paper. These concept is useful not only for the numerical implementation of the Preisach model but also for its theoretical investigation as well. A experimental configuration has been constructed to obtain the data we need for the modeling. A good quantitative match is observed between model output and experimental data. Some theoretical explore of the Preisach model can be applied to a wide class of smart material actuators.
Keywords
hysteresis; intelligent materials; matrix algebra; microactuators; piezoceramics; shape memory effects; Preisach model; complex hysteresis behavior; memory matrix; piezoceramics; shape memory alloys micro-actuator; smart material; Computational modeling; History; Hysteresis; Intelligent actuators; Mathematical model; Microactuators; Piezoelectric materials; Shape control; Shape memory alloys; Wires;
fLanguage
English
Publisher
ieee
Conference_Titel
Innovative Computing, Information and Control (ICICIC), 2009 Fourth International Conference on
Conference_Location
Kaohsiung
Print_ISBN
978-1-4244-5543-0
Type
conf
DOI
10.1109/ICICIC.2009.266
Filename
5412320
Link To Document