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20232026
most citedOmniLRS: A Photorealistic Simulator for Lunar Robotics

14 citations · 14 across the 5 of their papers we have counts for

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cs.RO2026

GM-Loco: Terrain-Adaptive Humanoid Locomotion on Granular Media

Junnosuke Kamohara, Feiyang Wu, Andy Ningan Zong +4

Humanoid locomotion on granular terrain remains a significant challenge due to its complex foot-terrain interaction dynamics that are difficult to model. Existing approaches either…

cs.RO2026

Robust bipedal locomotion on flowable slopes via foot-driven terrain manipulation

Deniz Kerimoglu, Junnosuke Kamohara, Jiyeon Maeng +4

Bipedal robots are challenging to control because they operate close to instability, where small variations in foot-terrain contact can rapidly destabilize locomotion. On rigid ter…

cs.RO2025

RL-augmented Adaptive Model Predictive Control for Bipedal Locomotion over Challenging Terrain

Junnosuke Kamohara, Feiyang Wu, Chinmayee Wamorkar +2

Model predictive control (MPC) has demonstrated effectiveness for humanoid bipedal locomotion; however, its applicability in challenging environments, such as rough and slippery te…

cs.RO2024

Modeling of Terrain Deformation by a Grouser Wheel for Lunar Rover Simulation

Junnosuke Kamohara, Vinicius Ares, James Hurrell +6

Simulation of vehicle motion in planetary environments is challenging. This is due to the modeling of complex terrain, optical conditions, and terrain-aware vehicle dynamics. One o…

cs.RO2023★ 14 cited

OmniLRS: A Photorealistic Simulator for Lunar Robotics

Antoine Richard, Junnosuke Kamohara, Kentaro Uno +4

Developing algorithms for extra-terrestrial robotic exploration has always been challenging. Along with the complexity associated with these environments, one of the main issues re…