Modeling of Shape Memory Alloy Actuated System Using a Modified Rate-dependent Prandtl-Ishlinskii Hysteresis Model

被引:0
|
作者
Liang, Mingwei [1 ]
Feng, Ying [1 ]
机构
[1] South China Univ Technol, Sch Automat Sci & Engn, Key Lab Autonomous Syst & Networked Control, Guangzhou 510640, Peoples R China
关键词
D O I
10.1109/icarm49381.2020.9195321
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
Shape memory alloys (SMAs) are widely used as actuators to construct various robotics systems, such as, minimally invasive surgery robots, micro in-pipe robots and biomimetic micro robots. However, the nonlinear hysteresis behaviors in SMA actuators seriously degrade the control accuracy and desired performances of SMA-actuated control systems. In this paper, an experimental platform based on SMA actuator is conducted. To make the platform capable of achieving precise control, the complex hysteresis characteristics of the SMA actuators are studied. The SMA actuator in this study exhibits complicated nonlinear properties with saturation nonlinearity and asymmetric hysteresis influenced by both the duty cycle of the input voltage and the load mass, which are different from the classical rate-dependent hysteresis behaviors. To explore the nonlinear properties of the SMA actuated system, open-loop experiments under different duty cycles and loads are testified, and a modified Rate-dependent Prandtl-Ishlinskii (RDPI) model is developed to enhance modeling abilities. Fitting effects of the modified RDPI model is validated by the comparison between the modeling output and experimental data.
引用
收藏
页码:113 / 118
页数:6
相关论文
共 50 条
  • [31] Inverse Rate-Dependent Prandtl-Ishlinskii Operators and Applications
    Al Janaideh, Mohammad
    Krejci, Pavel
    Monteiro, Giselle Antunes
    APPLICATIONS OF MATHEMATICS, 2023, 68 (06) : 713 - 726
  • [32] A Modified Prandtl-Ishlinskii Model for Modeling Asymmetric Hysteresis of Piezoelectric Actuators
    Jiang, Hao
    Ji, Hongli
    Qiu, Jinhao
    Chen, Yuansheng
    IEEE TRANSACTIONS ON ULTRASONICS FERROELECTRICS AND FREQUENCY CONTROL, 2010, 57 (05) : 1200 - 1210
  • [33] Parameter Identification Based on PSO Algorithm for Piezoelectric Actuating System with Rate-dependent Prandtl-Ishlinskii Hysteresis Modeling Method
    Li, Ying
    Feng, Ying
    Feng, Junjie
    Liu, Yueyue
    2019 IEEE 4TH INTERNATIONAL CONFERENCE ON ADVANCED ROBOTICS AND MECHATRONICS (ICARM 2019), 2019, : 36 - 41
  • [34] A Modified Prandtl-Ishlinskii Hysteresis Modeling Method with Load-dependent Delay for Characterizing Magnetostrictive Actuated Systems
    Feng, Ying
    Li, Zhi
    Rakheja, Subhash
    Jiang, Hui
    MECHANICAL SCIENCES, 2018, 9 (01) : 177 - 188
  • [35] Modeling of Hysteresis Nonlinearity in Piezoelectric Ceramic Micro-Positioning Platform based on Generalized Rate-Dependent Prandtl-Ishlinskii Model
    Luo, Yiling
    Zhou, Miaolei
    Xu, Rui
    2017 CHINESE AUTOMATION CONGRESS (CAC), 2017, : 574 - 578
  • [36] A Modified Prandtl-Ishlinskii Hysteresis Model for Modeling and Compensating Asymmetric Hysteresis of Piezo-Actuated Flexure-Based Systems
    Zhou, Chao
    Yuan, Meng
    Feng, Chen
    Ang, Wei Tech
    SENSORS, 2022, 22 (22)
  • [37] Further results on open-loop compensation of rate-dependent hysteresis in a magnetostrictive actuator with the Prandtl-Ishlinskii model
    Al Janaideh, Mohammad
    Aljanaideh, Omar
    MECHANICAL SYSTEMS AND SIGNAL PROCESSING, 2018, 104 : 835 - 850
  • [38] A Digitized Representation of the Modified Prandtl-Ishlinskii Hysteresis Model for Modeling and Compensating Piezoelectric Actuator Hysteresis
    Zhou, Chao
    Feng, Chen
    Aye, Yan Naing
    Ang, Wei Tech
    MICROMACHINES, 2021, 12 (08)
  • [39] A Generalized Prandtl-Ishlinskii Model for Hysteresis Modeling in Electromagnetic Devices
    Al Saaideh, Mohammad
    Alatawneh, Natheer
    Al Janaideh, Mohammad
    2021 IEEE ENERGY CONVERSION CONGRESS AND EXPOSITION (ECCE), 2021, : 4513 - 4518
  • [40] Improving the tracking performance of Atomic Force Microscope scanner with the modified rate-dependent Prandtl-Ishlinskii model
    Li, Linlin
    Gu, Guoying
    Zhu, Li-Min
    2017 INTERNATIONAL CONFERENCE ON ADVANCED MECHATRONIC SYSTEMS (ICAMECHS), 2017, : 456 - 461