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Control-Based Adaptive Behavior for 4-D Printed Flexible Intelligent Structure
DOI:10.1109/TIE.2023.3306412.png)
摘要
En 中文
4 - D printed structures have excellent applica-tion prospects in defense, aerospace, medical, and other fields due to their alterable shape and function. Current 4-D printed structures are limited to make predefined shape changes in response to particular external stimuli by the design of the materials and structures. However, it is crucial to achieve adaptive accurate control of its deformation in a dynamic environment, particularly in highly sensitive tasks. Therefore, we propose a deformation regulation strategy for a 4-D printed flexible intelligent structure based on an adaptive integral terminal sliding mode controller. The ef-fectiveness of the algorithm is verified using a lab-made finger structure made of Liquid Crystal Elastomer as a 4-D printed structural part. Considering the condition of dis-turbed and nonpredetermined external excitation, the bend-ing angle of the finger joint can be stable within +/- 2.1% of the expected value based on the feedback of the self-sensing information, which enables collaborative tracking of the deformation state of the external human finger. This controller-based, adaptive, and accurate deformation regu-lation is not possible with the existing 4-D printed deforma-tion structures and has not yet been reported nationally or internationally.
Keyword:
4-D printing
adaptive integral terminal sliding mode control
microcrack sensor
soft actuation
期刊
IF:
7.2
论文数:
1.8W
被引数:
9.8W
机构
引用论文
Programming Shape-Morphing Behavior of Liquid Crystal Elastomers via Parameter-Encoded 4D Printing通过参数编码的4D打印对液晶弹性体的形状变形行为进行编程
Disturbance rejection control for PMSM using integral sliding mode based composite nonlinear feedback control with load observer基于负载观测器的积分滑模复合非线性反馈控制的PMSM抗扰控制
ISA TRANSACTIONS
IF6.5

