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Yasuhisa Kamikawa

6 accepted papers

2024

Development of a Compact Robust Passive Transformable Omni-Ball for Enhanced Step-Climbing and Vibration Reduction

IROS 2024poster

This paper introduces the Passive Transformable Omni-Ball (PTOB), an advanced omnidirectional wheel engineered to enhance step-climbing performance, incorporate built-in actuators, diminish vibrations, and fortify structural integrity. By modifying the omni-ball’s structure from two to three segment…

Cited by 0SourceScholar
2024

Real-time Perceptive Motion Control using Control Barrier Functions with Analytical Smoothing for Six-Wheeled-Telescopic-Legged Robot Tachyon 3

IROS 2024poster

To achieve safe legged locomotion, it is crucial to generate motion in real-time considering various constraints in robots and environments. In this study, we propose a lightweight real-time perceptive motion control system for the newly developed six-wheeled-telescopic-legged robot, Tachyon 3. In t…

Cited by 7SourceScholar
2021

Tachyon: Design and Control of High Payload, Robust, and Dynamic Quadruped Robot with Series-Parallel Elastic Actuators

IROS 2021poster

This paper introduces a quadruped robot, Tachyon, which aims to achieve high payload, robust, and dynamic locomotion on the various terrain with high energy efficiency. Thanks to a novel compact series-parallel elastic actuator (SPEA) on the upper link and a four-bar linkage design in the knee joint…

Cited by 11SourceScholar
2018

Comparison Between Force-Controlled Skin Deformation Feedback and Hand-Grounded Kinesthetic Force Feedback for Sensory Substitution

RA-L 2018

Teleoperation and virtual reality systems benefit from force sensory substitution when kinesthetic force feedback devices are infeasible due to stability or workspace limitations. We compared the performance of sensory substitution when it is provided through a cutaneous method (skin deformation fee

Cited by 10SourceScholar
2018

Effects of Latency and Refresh Rate on Force Perception via Sensory Substitution by Force-Controlled Skin Deformation Feedback

ICRA 2018poster

Latency and refresh rate are known to adversely affect human force perception in bilateral teleoperators and virtual environments using kinesthetic force feedback, motivating the use of sensory substitution of force. The purpose of this study is to quantify the effects of latency and refresh rate on…

Cited by 0SourceScholar
2018

Magnified Force Sensory Substitution for Telemanipulation via Force-Controlled Skin Deformation

ICRA 2018poster

Teleoperation systems could benefit from force sensory substitution when kinesthetic force feedback systems are too bulky or expensive, and when they cause instability by magnifying force feedback. We aim to magnify force feedback using sensory substitution via force-controlled tactile skin deformat…

Cited by 8SourceScholar