TY - JOUR
T1 - 自传感介电弹性体执行器的动力学设计及应用
AU - Yan, Ziwen
AU - Luo, Kai
AU - Tian, Qiang
N1 - Publisher Copyright:
© 2023 Journal of Dynamics and Control. All rights reserved.
PY - 2023
Y1 - 2023
N2 - This paper proposes a dielectric elastomer (DE) soft actuator with sensing function, which can achieve synchronous measurement and control of membrane structures surfaces. Firstly, the dynamic model of electric driven process of the DE actuator is established, which can describe its electro-mechanical coupling behavior. Then, the parameters of the dynamic model arc identified by a scries of experiments. Moreover, the influence of some model parameters on dynamic responses of the DE actuator arc analyzed to understand its basic dynamic characteristics. Next, the simplified circuit model for self-sensing process of the DE actuator is established, and the relationship between the electrical parameters and displacement of the DE actuator was calibrated experimentally. Finally, experiments of adaptive control of membrane surface are carried out, and the corresponding control strategy is designed. Experimental results indicate that the DE actuator has high precision in both actuation and sensing. Therefore, the DE soft actuator is highly promising in construction of high-precision space membrane antennas.
AB - This paper proposes a dielectric elastomer (DE) soft actuator with sensing function, which can achieve synchronous measurement and control of membrane structures surfaces. Firstly, the dynamic model of electric driven process of the DE actuator is established, which can describe its electro-mechanical coupling behavior. Then, the parameters of the dynamic model arc identified by a scries of experiments. Moreover, the influence of some model parameters on dynamic responses of the DE actuator arc analyzed to understand its basic dynamic characteristics. Next, the simplified circuit model for self-sensing process of the DE actuator is established, and the relationship between the electrical parameters and displacement of the DE actuator was calibrated experimentally. Finally, experiments of adaptive control of membrane surface are carried out, and the corresponding control strategy is designed. Experimental results indicate that the DE actuator has high precision in both actuation and sensing. Therefore, the DE soft actuator is highly promising in construction of high-precision space membrane antennas.
KW - dielectric elastomer (DE)
KW - membrane structures
KW - self-sensing
KW - soft actuator
KW - surface control
UR - http://www.scopus.com/inward/record.url?scp=85170844670&partnerID=8YFLogxK
U2 - 10.6052/1672-6553-2022-020
DO - 10.6052/1672-6553-2022-020
M3 - 文章
AN - SCOPUS:85170844670
SN - 1672-6553
VL - 21
SP - 1
EP - 15
JO - Journal of Dynamics and Control
JF - Journal of Dynamics and Control
IS - 5
ER -