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April 21, 2026Journal of Robotics and Mechatronics0 citationsOpen Access

Spontaneous Rhythmic Behavior Generation in Robot Locomotion Based on Mechanical Stabilization

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KIKai ItoKSKeita SatoYIYusuke Ikemoto

Key Points

  • This study aims to explore the mechanisms behind spontaneous rhythmic behavior in robotic locomotion.
  • Developed a leg-equipped robot with mechanical stabilization and differential gear
  • Conducted hardware experiments to analyze ground reaction force equalization
  • Performed mathematical analysis using a nonlinear system to evaluate rhythm generation
  • The robot successfully equalized torque transmitted to the legs for stable locomotion
  • Spontaneous rhythmic behavior was generated through ground reaction force equalization
  • Findings indicate potential for improved energy efficiency in robotic gait patterns

Abstract

Animals exhibit a variety of gait patterns that vary with locomotor speed and energy efficiency. Although a variety of gait patterns have been studied, the mechanism of gait generation has remained vague. In this study, we performed ground reaction force equalization for stable locomotion by developing a one-input, two-output leg-equipped robot with a differential gear. The developed robot can tolerate angular velocity differences and equalize the torque transmitted to the legs. To investigate the possibility of rhythm generation based on ground reaction force equalization, hardware experiments and mathematical analysis were conducted using a nonlinear system. The robot experiments and theoretical analysis show that the robot can spontaneously generate rhythm by equalizing the ground reaction force.

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Cite This Study

Ito et al. (2026) studied this question.

synapsesocial.com/papers/69e71423cb99343efc98d7c2https://doi.org/10.20965/jrm.2026.p0619
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