Please use this identifier to cite or link to this item: https://repositori.mypolycc.edu.my/jspui/handle/123456789/10789
Title: SINGLE-ROD BRACHIATION ROBOT: MECHATRONIC CONTROL DESIGN AND VALIDATION OF PREJUMP PHASES
Authors: Lieskovský, Juraj
Akahane, Hijiri
Osawa, Aoto
Bušek, Jaroslav
Ikuo, Mizuuchi
Vyhlídal, Tomáš
Keywords: Input–output linearization
Nonlinear control
Optimal swing
Robotic brachiation
Single-rod robot
Issue Date: 2025
Publisher: IEEE/ASME Transactions on Mechatronics
Series/Report no.: Transactions on Mechatronics;
Abstract: A complete mechatronic design of a minimal configuration brachiation robot is presented. The robot consists of a single rigid rod with gripper mechanisms attached to both ends. The grippers are used to hang the robot on a horizontal bar on which it swings or rotates. The motion is imposed by repositioning the robot’s center of mass, which is performed using a crank-slide mechanism. Based on a nonlinear model, an optimal control strategy is proposed, for repositioning the center of mass in a bang-bang manner. Consequently, utilizing the concept of input–output linearization, a continuous control strategy is proposed that takes into account the limited torque of the crank-slide mechanism and its geometry. An increased attention is paid to energy accumulation towards the subsequent jump stage of the brachiation. These two strategies are validated and compared in simulations. The continuous control strategy is then also implemented within a low-cost STM32-based control system, and both the swing and rotation stages of the brachiation motion are experimentally validated.
URI: https://repositori.mypolycc.edu.my/jspui/handle/123456789/10789
Appears in Collections:JABATAN KEJURUTERAAN MEKANIKAL



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