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Jin Tak Kim

7 accepted papers

2026

Design of a Hydraulic-Driven Adaptive Gripper with a Novel Actuation Mechanism

ICRA 2026poster

This paper presents a novel hydraulic-driven two- finger robotic gripper designed to handle objects of various shapes and sizes. To meet the demands of field robotics and heavy industrial environments, a self-adaptive finger mechanism was integrated with hydraulic actuation. However, this integratio…

Cited by 0SourceScholar
2026

Gait-Parameterized Reinforcement Learning for a Hydraulic Quadruped Robot

RA-L 2026

Designing reward functions for reinforcement learning (RL)-based quadruped locomotion often requires extensive trial-and-error, limiting efficiency and interpretability. Lack of interpretability is particularly critical for large-scale hydraulic quadrupeds, where undetected unstable behaviors during

Cited by 0SourceScholar
2026

Learning Quadrupedal Locomotion for a Heavy Hydraulic Robot Using an Actuator Model

ICRA 2026poster

The simulation-to-reality (sim-to-real) transfer of large-scale hydraulic robots presents a significant challenge in robotics because of the inherent slow control response and complex fluid dynamics. The complex dynamics result from the multiple interconnected cylinder structure and the difference i…

2025

Design of a Hydraulic-Driven Adaptive Gripper With a Novel Actuation Mechanism

RA-L 2025

This paper presents a novel hydraulic-driven twofinger robotic gripper designed to handle objects of various shapes and sizes. To meet the demands of field robotics and heavy industrial environments, a self-adaptive finger mechanism was integrated with hydraulic actuation. However, this integration

Cited by 1SourceScholar
2023

Design and Implementation of a Two-Wheeled Inverted Pendulum Robot With a Sliding Mechanism for Off-Road Transportation

RA-L 2023

This letter proposes a multi-degrees-of-freedom two-wheeled inverted pendulum robot (mD-TWIPR) for off-road transportation. A two-wheeled inverted pendulum robot (TWIPR), popularly known as a segway, has high mobility owing to its simple structure without steering or suspension. The proposed robot h

Cited by 11SourceScholar
2023

Designing a Bow-Inspired Rigidable Exosuit for Adaptive Support

RA-L 2023

This letter introduces a “rigidable exosuit” inspired by bow mechanics, which can dynamically alter its frame rigidity based on the tension of the attached string. The exosuit affords posture assistance (rigid phase) or unrestricted movement (flexible phase) as required by tasks. In the flexible pha

Cited by 0SourceScholar
2022

Snake Robot Gripper Module for Search and Rescue in Narrow Spaces

RA-L 2022

This letter presents a gripper module for a snake-like robot to perform search and rescue tasks in a narrow space. The proposed gripper module has three features: (1) It can accommodate the fingers inside its body. (2) It has three fingers that can grip objects with irregular surfaces stably. (3) On

Cited by 54SourceScholar