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Kentaro Uno

9 accepted papers

2026

A Pin-Array Structured Climbing Robot for Stable Locomotion on Steep Rocky Terrain

ICRA 2026poster

Climbing robots face significant challenges when navigating unstructured environments, where reliable attachment to irregular surfaces is critical. We present a novel mobile climbing robot equipped with compliant pin-array structured grippers that passively conform to surface irregularities, ensurin…

2026

LIMBERO: A Limbed Climbing Exploration Robot Toward Traveling on Rocky Cliffs

ICRA 2026poster

In lunar and planetary exploration, legged robots have attracted significant attention as an alternative to conventional wheeled robots, which struggle to traverse rough and uneven terrain. To enable locomotion over highly irregular and steeply inclined surfaces, limbed climbing robots equipped with…

2026

MoonBot: Modular and On-Demand Reconfigurable Robot Toward Moon Base Construction (I)

ICRA 2026poster

The allure of lunar surface exploration and development has recently captured widespread global attention. Robots have proved to be indispensable for exploring uncharted terrains, uncovering and leveraging local resources, and facilitating the construction of future human habitats. In this article, …

Cited by 0Scholar
2025

Robust and Modular Multi-Limb Synchronization in Motion Stack for Space Robots with Trajectory Clamping via Hypersphere

IROS 2025

Modular robotics holds immense potential for space exploration, where reliability, repairability, and reusability are critical for cost-effective missions. Coordination between heterogeneous units is paramount for precision tasks - whether in manipulation, legged locomotion, or multi-robot interacti

Cited by 6SourcecodeScholar
2025

Tightly-Coupled LiDAR-IMU-Leg Odometry With Online Learned Leg Kinematics Incorporating Foot Tactile Information

RA-L 2025

In this letter, we present tightly coupled LiDAR-IMU-leg odometry, which is robust to challenging conditions such as featureless environments and deformable terrains. We developed an online learning-based leg kinematics model named the <italic xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xli

Cited by 2SourcecodeScholar
2024

Enabling Faster Locomotion of Planetary Rovers With a Mechanically-Hybrid Suspension

RA-L 2024

The exploration of the lunar poles and the collection of samples from the martian surface are characterized by shorter time windows demanding increased autonomy and speeds. Autonomous mobile robots must intrinsically cope with a wider range of disturbances. Faster off-road navigation has been explor

Cited by 12SourceScholar
2024

OmniLRS: A Photorealistic Simulator for Lunar Robotics

ICRA 2024poster

Developing algorithms for extra-terrestrial robotic exploration has always been challenging. Along with the complexity associated with these environments, one of the main issues remains the evaluation of said algorithms. With the regained interest in lunar exploration, there is also a demand for qua…

Cited by 12SourcecodeScholar
2023

RAMP: Reaction-Aware Motion Planning of Multi-Legged Robots for Locomotion in Microgravity

ICRA 2023poster

Robotic mobility in microgravity is necessary to expand human utilization and exploration of outer space. Bio-inspired multi-legged robots are a possible solution for safe and precise locomotion. However, a dynamic motion of a robot in microgravity can lead to failures due to gripper detachment caus…

Cited by 8SourceScholar