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February 16, 2026Robotics2 citationsOpen Access

Trajectory Shaping to Reproduce Rod Tip Vibration Suppression in the Rebound Phenomenon of Fly-Casting

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RHRyosuke HakamataMEMitsuru ENDOYSYusuke Sugahara

Key Points

  • To propose and evaluate a trajectory-shaping method for suppressing rod tip vibrations during fly-casting.
  • Analyzed the rebound phenomenon as a control problem for flexible systems.
  • Developed a second-order approximation in the trajectory shaping framework.
  • Conducted simulations using a rod model to assess performance.
  • Tested a robotic prototype in experimental casting scenarios.
  • Achieved over 80% suppression of rod tip vibration amplitude in experimental trials.
  • Confirmed the shaped trajectory aligns with the re-acceleration characteristics of the rod-handle during casting.
  • Demonstrated potential applications for engineering improvements in fly-casting techniques.

Abstract

Fly-casting is a throwing technique in which a flexible rod is used to cast a lightweight line. In skilled fly-casting, a phenomenon known as the rebound phenomenon is observed, where the residual vibration of the rod tip is suppressed by the re-acceleration of the rod handle during the rod-stop phase. This vibration suppression plays an essential role in the casting performance; however, an engineering method for this phenomenon has not been established. Therefore, the purpose of this study is to propose a trajectory-shaping method by interpreting the rebound phenomenon as a vibration suppression control problem for flexible systems with nonzero initial conditions. The proposed method applies a conventional shaping framework to rod systems by introducing a second-order approximation and repeatedly shaping the input trajectory to suppress the approximation errors. Through simulations using a rod model, it was shown that the shaped trajectory yields the characteristic re-acceleration of the rod-handle angular velocity during the rod-stop phase, consistent with the rebound phenomenon. Through experiments using a robotic prototype, it was confirmed that the rod tip vibration amplitude is suppressed by over 80% in two types of casting. These results are useful for further studies on the engineering realization of fly-casting.

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Cite This Study

Hakamata et al. (2026) studied this question.

synapsesocial.com/papers/6992b3939b75e639e9b08515https://doi.org/10.3390/robotics15020042
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