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20242026
most citedICP-Based Pallet Tracking for Unloading on Inclined Surfaces by Autonomous Forklifts

1 citations · 1 across the 1 of their papers we have counts for

collaborators

10 papers

cs.RO20261 cited

ICP-Based Pallet Tracking for Unloading on Inclined Surfaces by Autonomous Forklifts

Takuro Kato, Mitsuharu Morisawa

This paper proposes a control method for autonomous forklifts to unload pallets on inclined surfaces, enabling the fork to be withdrawn without dragging the pallets. The proposed m…

cs.RO2025

Learning Differentiable Reachability Maps for Optimization-based Humanoid Motion Generation

Masaki Murooka, Iori Kumagai, Mitsuharu Morisawa +1

To reduce the computational cost of humanoid motion generation, we introduce a new approach to representing robot kinematic reachability: the differentiable reachability map. This…

cs.RO2025

TACT: Humanoid Whole-body Contact Manipulation through Deep Imitation Learning with Tactile Modality

Masaki Murooka, Takahiro Hoshi, Kensuke Fukumitsu +5

Manipulation with whole-body contact by humanoid robots offers distinct advantages, including enhanced stability and reduced load. On the other hand, we need to address challenges…

cs.RO2025

Humanoid Loco-Manipulations Pattern Generation and Stabilization Control

Masaki Murooka, Kevin Chappellet, Arnaud Tanguy +5

In order for a humanoid robot to perform loco-manipulation such as moving an object while walking, it is necessary to account for sustained or alternating external forces other tha…

cs.RO2025

Humanoid Loco-manipulation Planning based on Graph Search and Reachability Maps

Masaki Murooka, Iori Kumagai, Mitsuharu Morisawa +2

In this letter, we propose an efficient and highly versatile loco-manipulation planning for humanoid robots. Loco-manipulation planning is a key technological brick enabling humano…

cs.RO2025

Centroidal Trajectory Generation and Stabilization based on Preview Control for Humanoid Multi-contact Motion

Masaki Murooka, Mitsuharu Morisawa, Fumio Kanehiro

Multi-contact motion is important for humanoid robots to work in various environments. We propose a centroidal online trajectory generation and stabilization control for humanoid d…