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Ko Yamamoto

21 accepted papers

2026

Simulation of Adaptive Running With Flexible Sports Prosthesis Using Reinforcement Learning of Hybrid-Link System

RA-L 2026

This study proposes a reinforcement learning–based framework for adaptive running motion simulation in a unilateral transtibial amputee using a hybrid-link system that incorporates the flexibility of a leaf-spring-type sports prosthesis. The design and selection of sports prostheses typically rely o

Cited by 0SourceScholar
2025

Effect of Haptic Feedback on Avoidance Behavior and Visual Exploration in Dynamic VR Pedestrian Environment

IROS 2025

Human crowd simulation in virtual reality (VR) is a powerful tool with potential applications including emergency evacuation training and assessment of building layout. While haptic feedback in VR enhances immersive experience, its effect on virtual walking behavior in dense and dynamic pedestrian f

Cited by 1SourceScholar
2025

Modeling and Control of Aerial Robot SERPENT: A Soft Structure Incorporated Multirotor Aerial Robot Capable of In-Flight Flexible Deformation

ICRA 2025

This paper introduces a novel method for controlling multirotor aerial robots connected by passive flexible elements. Despite the growing popularity of multirotor aerial robots, their real-world applications remain limited due to difficulties adapting to complex environments. Soft robotics, due to i

Cited by 0SourceScholar
2025

Unified Framework of Gradient Computation for Hybrid-Link System and Its Dynamical Simulation by Implicit Method

RA-L 2025

Flexible tools such as golf clubs and sports prostheses used for exercise are generally constructed from materials that are both strong and lightweight enough to withstand the weight and speed of human movement. The authors have previously proposed a hybrid-link system that integrates a rigid-link s

Cited by 1SourceScholar
2024

Compliance Optimization Control for Rigid-Soft Hybrid System and its Application in Humanoid Robot Motion Control

IROS 2024poster

Flexibility and softness play a significant role in dynamic human motions. This includes the flexibility owing to ligaments in the human body and the softness of external structures such as a leaf-spring-type prosthesis. Thus, robotic systems need to utilize such flexibility to achieve dynamic and e…

Cited by 1SourceScholar
2024

Modeling of Hydraulic Soft Hand with Rubber Sheet Reservoir and Evaluation of its Grasping Flexibility and Control

IROS 2024poster

In situations where robots work alongside humans, they must be capable of responding flexibly to unexpected external forces. To address this challenge, researchers have conducted numerous studies on soft robotics. However, most of the soft hands studied so far are powered by pneumatic pressure and c…

Cited by 0SourceScholar
2023

Development of Hydraulically-driven Soft Hand for Handling Heavy Vegetables and its Experimental Evaluation

ICRA 2023poster

In this study, we develop a hydraulically-driven soft robotic hand for handling heavy vegetables in a vegetable factory and report its experimental validations. The working population in agriculture is decreasing worldwide, creating a lot of demands for the robotic automation in harvest and trans-po…

Cited by 10SourceScholar
2022

Application of Piece-wise Constant Strain Model to Flexible Deformation Calculation of Sports Prosthesis and Stiffness Estimation

IROS 2022poster

In this study, we present an application of the Piece-wise Constant Strain (PCS) model to a flexible deformation analysis of a sports prosthesis leg. Dynamic motion analysis of an athlete wearing a sports prosthesis is important to clarify a relationship between the prosthesis characteristics and th…

Cited by 3SourceScholar
2022

Decoupling of Inertia Effect in Angular Momentum of a Humanoid and its Application to Resolved Viscoelasticity Control

ICRA 2022poster

As a basic part of the centroidal dynamics, an-gular momentum plays a critical role in humanoid motion control. Therefore, how to explicitly express and control an-gular momentum through whole-body motion is an important topic for researchers. This study discusses the selection of the generalized ve…

Cited by 2SourceScholar
2022

Experimental Study on Impact Resistance of Multi-DOF Electro-Hydrostatic Robot Systems Using Hydracer, a 6DOF Arm

IROS 2022poster

Industrial robots require force controllability and impact resistance to ensure safe physical interactions. An electro-hydrostaic actuator (EHA) is expected to be suitable for such applications because it has high backdrivability which improve both force controllability at contact and impact resista…

Cited by 2SourceScholar
2022

Integration of Variable-height and Hopping Strategies for Humanoid Push Recovery

IROS 2022poster

In this study, we present a framework to en-sure seamless transition in humanoid push recovery involving hopping strategy. We propose a method to adaptively change the time constant that integrated the ankle strategy and variable height strategy. This framework excites a hopping motion against a lar…

Cited by 2SourceScholar
2021

Dynamics Computation of a Hybrid Multi-link Humanoid Robot Integrating Rigid and Soft Bodies

IROS 2021poster

This study presents dynamics computation and control of a hybrid multi-link system that integrates rigid- and soft-bodies. It is a challenging problem to install a softness in a robot system, which is an important factor in human body. Softness achieved by human muscles and ligaments contributes to…

Cited by 11SourceScholar
2019

Resolved Viscoelasticity Control Considering Singularity for Knee-stretched Walking of a Humanoid

ICRA 2019poster

This paper describes a stable knee-stretched walking of a humanoid by the resolved viscoelasticity control (RVC). The RVC method resolves multiple viscoelasticities in task-space, including the center of mass viscoelasticity for balancing, into joint-space viscoelasticity. Although a robust and comp…

Cited by 5SourceScholar
2019

Virtual-mass-ellipsoid Inverted Pendulum Model and Its Applications to 3D Bipedal Locomotion on Uneven Terrains

IROS 2019poster

It is still an open problem to develop a reduced order model of bipedal walking that closely represents the complex dynamics of humanoid robots. In this paper, we propose control methodologies, removing both the constant CoM height constraint and the constant centroidal angular momentum constraint.…

Cited by 19SourceScholar
2017

Robust walking by resolved viscoelasticity control explicitly considering structure-variability of a humanoid

ICRA 2017poster

This paper discusses the resolved viscoelasticity control (RVC) method that explicitly considers the structure-variability for a humanoid. In a previous report, the author proposed resolving the virtual viscoelasticity at the center of gravity into the joint viscoelasticity considering redundant deg…

Cited by 13SourceScholar