TY - JOUR
T1 - On the General Dynamic Modeling Method for Soft Bending Actuators With Multiple Fluidic Chambers
AU - Zhou, Wen
AU - Zhang, Jiahe
AU - Liu, Qilong
AU - Wang, Chaohui
AU - Chen, Guimin
N1 - Publisher Copyright:
Copyright © 2026 by ASME.
PY - 2026/4/1
Y1 - 2026/4/1
N2 - The complex structure, infinite degrees-of-freedom, and nonlinearity of soft actuators make dynamic modeling one of the most challenging tasks in the field of soft robotics. Furthermore, few studies on general dynamic modeling methods for soft actuators with varying structures have been conducted to date. This article introduces a novel modeling approach for symmetrically chambered soft bending actuators, offering a simple, low-cost, and highly practical solution. First, the actuator with a rectangular cross section is taken as the standard type to build an analytical prototype model. Next, a structural equivalence method is proposed to convert nonstandard actuators into standard types, making them suitable for the prototype model. Finally, the dynamic model of the nonstandard actuator is developed by combining the prototype model with error compensations. Four soft actuators with different cross sections were fabricated to verify the modeling approach's feasibility. The results proved that it is simple to obtain the dynamic models of various soft actuators using the proposed method. Model-based angle tracking experiments for these four actuators were conducted to confirm the effectiveness and usefulness of the dynamic models developed with the proposed modeling method.
AB - The complex structure, infinite degrees-of-freedom, and nonlinearity of soft actuators make dynamic modeling one of the most challenging tasks in the field of soft robotics. Furthermore, few studies on general dynamic modeling methods for soft actuators with varying structures have been conducted to date. This article introduces a novel modeling approach for symmetrically chambered soft bending actuators, offering a simple, low-cost, and highly practical solution. First, the actuator with a rectangular cross section is taken as the standard type to build an analytical prototype model. Next, a structural equivalence method is proposed to convert nonstandard actuators into standard types, making them suitable for the prototype model. Finally, the dynamic model of the nonstandard actuator is developed by combining the prototype model with error compensations. Four soft actuators with different cross sections were fabricated to verify the modeling approach's feasibility. The results proved that it is simple to obtain the dynamic models of various soft actuators using the proposed method. Model-based angle tracking experiments for these four actuators were conducted to confirm the effectiveness and usefulness of the dynamic models developed with the proposed modeling method.
KW - compliant mechanisms and robots
KW - control of mechanical systems
KW - dynamics
KW - dynamics
KW - general modeling method
KW - kinematics
KW - soft actuator
KW - structural equivalence
KW - symmetrical chambers
UR - https://www.scopus.com/pages/publications/105031149863
U2 - 10.1115/1.4071040
DO - 10.1115/1.4071040
M3 - 文章
AN - SCOPUS:105031149863
SN - 1942-4302
VL - 18
JO - Journal of Mechanisms and Robotics
JF - Journal of Mechanisms and Robotics
IS - 4
M1 - 041001
ER -