arXiv · 2609.37086
Multifunctional Locomotion Control of Multi-Jointed BURs with Swimming and gait Capabilities
Abstract
Multimodal biomimetic underwater robots (BURs) can conduct underwater tasks suitable for the environment. Combining the characteristics of aquatic organisms enables the swimming and leggedlocomotion required for underwater exploration. Locomotion control mechanism relies on rule-based behavior selection and the designer's discretion. This limits the robot's ability to acquire new behavioral capabilities to the predetermined range of behaviors. To address these challenges, we propose a mechanism and control system that enables the expression of multimodal locomotion capabilities from the same multi-jointed structure. A mechanism equipped with four leg-fins each having four axes is used. This controller achieves nonlinear behavior based on sensor modalities, rather than relying on predefined conditional rule-based on locomotion functions. This system was validated through both physical and simulation testing based on multiple sensor data and behavioral patterns. Utilizing a potential function in multimodal locomotion control was verified to enable transitions between two or three behaviors. Implementing the control method as a multimodal controller is expected to enhance its application in underwater exploration. Our project page is at https://tasada038.github.io/multi-jointed-bur/.
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Takumi Asada, Hideo Furuhashi, Kenta Tabata, Renato Miyagusuku, Koichi Ozaki. 2026-09-29. Multifunctional Locomotion Control of Multi-Jointed BURs with Swimming and gait Capabilities. https://doi.org/10.1080/01691864.2026.2728312
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