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Modeling and dynamic analysis of a robotic arm with pneumatic artificial muscle by transfer matrix method

Mahdi Bamdad, Mahdi Feyzollahzadeh, S. Rahi Safavi

发表年份
2023
引用次数
2

摘要

Pneumatic artificial muscle (PAM) has attracted significant attention owing to its safe and compliant physical properties in industrial manipulators, along with advanced service technologies. Since PAM is prone to large deformation problems, actuation control, and dynamic identification is required to perceive considering precise and fast computation. This article presents a methodology for accurate dynamic modeling and analysis of a planar robotic arm in the presence of large deformations caused by the artificial muscle. This novel planar robotic arm with pneumatic actuation and spring loaded in an antagonistic form is designed and fabricated. This article deals with the displacement analysis of a new type of PAM-actuated mechanism for large deformation. The aim is to find an accurate mathematical model of this robotic arm with motion nonlinearity. Since vibration can be generated in the articulating operations according to the dynamic behavior of PAM, a transfer-matrix method is proposed to explore the effect of flexibility undergoing planar flexural deformation. An explanation of the procedure through presenting its general formulation is employed to experiment. The discrete method is analyzed beside the rich datasets generated for actuator identification in the preliminary experimental study. The transfer matrices are determined considering the flexibilities whereas results are verified using MSC.ADAMS

关键词

Robotic armPneumatic artificial musclesMatrix (chemical analysis)Artificial muscleComputer scienceTransfer matrixTransfer (computing)Transfer-matrix method (optics)Control engineeringEngineering

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