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Temma Suzuki

11 accepted papers

2026

WiXus: A Wheeled-Legged Robot with Wire-Driven Environmental Utilizing to Integrate Mobility and Manipulation

ICRA 2026poster

Wheeled-legged robots, which have wheels at their feet and achieve high mobility by coordinating wheel drive and leg drive, have been developed. These robots have been developed purely as platforms specialized for locomotion. Therefore, they do not have a means to repurpose their legs for roles othe…

2025

An RGB-D Camera-Based Multi-Small Flying Anchors Control for Wire-Driven Robots Connecting to the Environment

IROS 2025

In order to expand the operational range and payload capacity of robots, wire-driven robots that leverage the external environment have been proposed. It can exert forces and operate in spaces far beyond those dictated by its own structural limits. However, for practical use, robots must autonomousl

Cited by 0SourceScholar
2025

Design Optimization of Three-Dimensional Wire Arrangement Considering Wire Crossings for Tendon-driven Robots

IROS 2025

Tendon-driven mechanisms are useful from the perspectives of variable stiffness, redundant actuation, and lightweight design, and they are widely used, particularly in hands, wrists, and waists of robots. The design of these wire arrangements has traditionally been done empirically, but it becomes e

Cited by 0SourceScholar
2025

KLEIYN : A Quadruped Robot with an Active Waist for Both Locomotion and Wall Climbing

IROS 2025

In recent years, advancements in hardware have enabled quadruped robots to operate with high power and speed, while robust locomotion control using reinforcement learning (RL) has also been realized. As a result, expectations are rising for the automation of tasks such as material transport and expl

Cited by 3SourceScholar
2024

CubiX: Portable Wire-Driven Parallel Robot Connecting to and Utilizing the Environment

IROS 2024poster

A wire-driven parallel robot is a type of robotic system where multiple wires are used to control the movement of a end-effector. The wires are attached to the end-effector and anchored to fixed points on external structures. This configuration allows for the separation of actuators and end-effector…

Cited by 0SourceScholar
2024

Design Optimization of Wire Arrangement With Variable Relay Points in Numerical Simulation for Tendon-Driven Robots

RA-L 2024

One of the most important features of tendon-driven robots is the ease of wire arrangement and the degree of freedom it affords, enabling the construction of a body that satisfies the desired characteristics by modifying the wire arrangement.Various wire arrangement optimization methods have been pr

Cited by 4SourceScholar
2024

SAQIEL: Ultra-Light and Safe Manipulator With Passive 3D Wire Alignment Mechanism

RA-L 2024

Improving the safety of collaborative manipulators necessitates the reduction of inertia in the moving part. Within this paper, we introduce a novel approach in the form of a passive 3D wire aligner, serving as a lightweight and low-friction power transmission mechanism, thus achieving the desired l

Cited by 12SourceScholar
2023

Design Method of a Kangaroo Robot with High Power Legs and an Articulated Soft Tail

IROS 2023poster

In this paper, we focus on the kangaroo, which has powerful legs capable of jumping and a soft and strong tail. To incorporate these unique structure into a robot for utilization, we propose a design method that takes into account both the feasibility as a robot and the kangaroo-mimetic structure. B…

Cited by 2SourceScholar
2022

Imitation Behavior of the Outer Edge of the Foot by Humanoids Using a Simplified Contact State Representation

IROS 2022poster

There is a way to utilize humanoid robots to mimic human behavior by taking advantage of their human-like proportions. In general, motion capture is used; in this case, the posture of the body links can be taken. However, this method does not provide detailed information on the contact state, which…

Cited by 0SourceScholar
2022

Learning of Balance Controller Considering Changes in Body State for Musculoskeletal Humanoids

IROS 2022poster

The musculoskeletal humanoid is difficult to modelize due to the flexibility and redundancy of its body, whose state can change over time, and so balance control of its legs is challenging. There are some cases where ordinary PID controls may cause instability. In this study, to solve these problems…

Cited by 3SourceScholar
2022

RAMIEL: A Parallel-Wire Driven Monopedal Robot for High and Continuous Jumping

IROS 2022poster

Legged robots with high locomotive performance have been extensively studied, and various leg structures have been proposed. Especially, a leg structure that can achieve both continuous and high jumps is advantageous for moving around in a three-dimensional environment. In this study, we propose a p…

Cited by 10SourceScholar