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Tadayoshi Aoyama

19 accepted papers

2025

Funabot-Sleeve: A Wearable Device Employing McKibben Artificial Muscles for Haptic Sensation in the Forearm

RA-L 2025

Haptic feedback systems play a critical role in enriching the user experience in human-robot interaction. However, existing devices designed for evoking haptic sensations often face limitations owing to their low degree of freedom of deformation. In this study, we introduce the Funabot-Sleeve, a hap

Cited by 31SourceScholar
2025

Improved Availability of Mobile Network Teleoperation by Employing a Video Conferencing Application With Audio-Embedded Commands

RA-L 2025

This study proposed an innovative teleoperation system utilizing video conferencing applications to enhance availability and operability in mobile networks. The proposed system accomplished this by transmitting video through screen sharing and embedding control signals into audio signals by converti

Cited by 2SourceScholar
2025

Intuitive Hand Positional Guidance Using McKibben-Based Surface Tactile Sensations to Shoulder and Elbow

RA-L 2025

Hand positional guidance with intuitive perception is crucial for enhancing user interaction and task performance in immersive environments. However, conventional hand positional guidance methods, relying on tactile sensations, lack intuitiveness. Consequently, users require instruction on the relat

Cited by 2SourceScholar
2024

Enhancing the LLM-Based Robot Manipulation Through Human-Robot Collaboration

RA-L 2024

Large Language Models (LLMs) are gaining popularity in the field of robotics. However, LLM-based robots are limited to simple, repetitive motions due to the poor integration between language models, robots, and the environment. This letter proposes a novel approach to enhance the performance of LLM-

Cited by 83SourceScholar
2024

RNN-Based Visual Guidance for Enhanced Sense of Agency in Teleoperation With Time-Varying Delays

RA-L 2024

Intuitive teleoperation enables operators to embody remote robots, providing the sensation that the robot is part of their own body during control. The sense of agency (SoA), i.e., the feeling of controlling the robot, contributes to enhanced motivation and embodiment during teleoperation. However,

Cited by 1SourceScholar
2024

Real-Time Spatiotemporal Assistance for Micromanipulation Using Imitation Learning

RA-L 2024

There has been an increasing demand for microscopic work using optical microscopes and micromanipulators for applications in various fields. However, microinjection requires skilled operators, and the considerable shortage of experts has become a recent challenge. We overcome this challenge by propo

Cited by 10SourceScholar
2022

Cutaneous Feedback Interface for Teleoperated In-Hand Manipulation

IROS 2022poster

In-hand pivoting is one of the important manipulation skills that leverage robot grippers' extrinsic dexterity to perform repositioning tasks to compensate for environmental uncertainties and imprecise motion execution. Although many researchers have been trying to solve pivoting problems using math…

Cited by 4SourceScholar
2021

Microinjection System to Enable Real-Time 3D Image Presentation Through Focal Position Adjustment

RA-L 2021

The microinjection technique, in which DNA is injected into cells, is widely applied in fields such as biology, medicine, and pharmacy. However, the implementation of the microinjection process requires skill and, thus, it is necessary to improve the operability. To this end, this study proposes a m

Cited by 6SourceScholar
2021

View-expansive Microscope System with Real-time High-resolution Imaging for Simplified Microinjection Experiments

ICRA 2021poster

Microinjection technology is applied widely in biomedical research for the purposes of gene manipulation and microinsemination. Generally, microinjection is performed under an optical microscope environment through image presentation of the targets. To perform the microinjection process, it is neces…

Cited by 5SourceScholar
2020

Enhancing the Transparency by Onomatopoeia for Passivity-Based Time-Delayed Teleoperation

RA-L 2020

Robotic teleoperation with force feedback has been studied extensively since it was first developed in the 1940 s. Time delay is a common problem of bilateral teleoperation systems. Although many efforts on optimizing the control architectures have been made, there is always a trade-off between tran

Cited by 14SourceScholar
2018

High-Speed Well-Focused Image-Capturing System for Moving Micro-Objects Based on Histograms of the Luminance

ICRA 2018poster

In recent years, vision-based analysis systems of micro-objects in a microchannel have been actively developed. However, it is difficult to focus on high-speed micro-objects in a microchannel because the general height of a microchannel is approximately 10-100 μm, whereas the depth of focus of the o…

Cited by 0SourceScholar
2017

Development of a 4-joint 3-DOF robotic arm with anti-reaction force mechanism for a multicopter

IROS 2017poster

In this paper, we propose a design method for the mechanism of a robotic arm suitable for a multicopter. The motion of an arm attached to a multicopter can possibly disturb the multicopter attitude. Our aim is to suppress this attitude disturbance by mechanical methods. In the proposed design method…

Cited by 25SourceScholar
2017

View expansion system for microscope photography based on viewpoint movement using Galvano mirror

IROS 2017poster

Recent progress in LOC technology have made it possible to analyze cells in microfluidic devices in a microscopic environment. Vision-based cell analysis systems have a limitation in their analysis range owing to the small view area of the microscopic objective lens; thus, an expansion of the view a…

Cited by 12SourceScholar
2016

Control scheme of nongrasping manipulation based on virtual connecting constraint

ICRA 2016

The research field of nongrasping manipulation is a maturing area in robotic motion control. However, the common principles of motion planning for nongrasping manipulation systems have not yet been established. This paper proposes the concept of virtual connecting manipulation as a generalized motio

Cited by 1SourceScholar
2016

Quasi-passive dynamic autonomous control to enhance horizontal and turning gait speed control

IROS 2016poster

This paper proposes a quasi-passive dynamic autonomous control (Q-PDAC) for a three-dimensional (3-D) bipedal gait of humanoid robots from start points to goal points. The major approach for 3-D traveling is currently footstep planning by a constantly stable gait with an emphasis on its accurate and…

Cited by 2SourceScholar
2016

Unified bipedal gait for walking and running by dynamics-based virtual holonomic constraint in PDAC

ICRA 2016

Conventional humanoids have achieved walking and running by independent controllers, even though a transition between these independent motions should be added to connect them while ensuring stability. In contrast, human selects walking/running at low/high speed in terms of energy efficiency, and tr

Cited by 6SourceScholar
2015

A scheme for manipulating a passive object using an active plate

ICRA 2015poster

We propose a novel scheme for manipulating a passive object using an active plate. The objective of this study is to control an object's orientation with respect to the gravitational force direction by using an active plate for realizing hitherto unrealized object motion. In this context, motions of…

Cited by 3SourceScholar
2015

Optimal use of arm-swing for bipedal walking control

ICRA 2015poster

Walking capability composed of stability and efficiency is one of the most important issues in the field of humanoid robots. An effective swing of the arms is expected to enhance the walking capability under the constraints from the limited body. We propose an arm-swing method to enhance the stabili…

Cited by 6SourceScholar
2015

Realization of flower stick rotation using robotic arm

IROS 2015poster

Flower stick juggling is a dexterous task done by skillful jugglers. We aim to realize dexterous tasks done by humans using robotic systems. This work focuses on flower stick juggling and proposes a feedback control strategy for a flower stick juggling task called “propeller” as one of the robotic d…

Cited by 18SourceScholar