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Masaki Murooka

22 accepted papers

2025

Reinforcement Learning of Contact Preferability in Multi-Contact Locomotion Planning for Humanoids

RA-L 2025

In this paper, we propose the multi-contact locomotion planning framework for humanoid robots that leverages the target contact selection considering its long-term preferability by reinforcement learning (RL) in optimization-based motion generation with feasibility constraints. It is difficult to pr

Cited by 1SourceScholar
2025

TACT: Humanoid Whole-Body Contact Manipulation Through Deep Imitation Learning With Tactile Modality

RA-L 2025

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 such as the increased computational cost of motion generation and the difficulty of measuring broad-area contact. We the

Cited by 8SourceScholar
2024

Whole-Body Multi-Contact Motion Control for Humanoid Robots Based on Distributed Tactile Sensors

RA-L 2024

To enable humanoid robots to work robustly in confined environments, multi-contact motion that makes contacts not only at extremities, such as hands and feet, but also at intermediate areas of the limbs, such as knees and elbows, is essential. We develop a method to realize such whole-body multi-con

Cited by 10SourcecodeScholar
2022

Centroidal Trajectory Generation and Stabilization Based on Preview Control for Humanoid Multi-Contact Motion

RA-L 2022

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 dynamic multi-contact motion. The proposed method features the drastic reduction of the computational cost by using previ

Cited by 28SourcecodeScholar
2022

Reachability Based Trajectory Generation Combining Global Graph Search in Task Space and Local Optimization in Configuration Space

IROS 2022poster

In this paper, we propose a trajectory planning framework for a robot that exploits a pre-computed database of end-effector trajectories as the guidance of optimization-based inverse kinematics. We constructed a reachable graph of a robot offline, which represents feasible end-effector paths with co…

Cited by 1SourceScholar
2021

Humanoid Loco-Manipulation Planning Based on Graph Search and Reachability Maps

RA-L 2021

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 humanoid robots to autonomously perform object transportation by manipulating them. We formulate planning of the alternation a

Cited by 36SourceScholar
2021

Humanoid Loco-Manipulations Pattern Generation and Stabilization Control

RA-L 2021

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 than ground-feet reaction, resulting from humanoid-object contact interactions. In this letter, we propose a bipedal contro

Cited by 30SourceScholar
2021

Multi-Contact Locomotion Planning With Bilateral Contact Forces Considering Kinematics and Statics During Contact Transition

RA-L 2021

In this letter, we propose a multi-contact locomotion planning framework for a humanoid robot to traverse complex environments utilizing bilateral contact forces with reasonable computational time. We hypothesize that a bilateral contact can be approximated by a pair of surface contacts, and expand

Cited by 7SourceScholar
2020

Aerial Regrasping: Pivoting with Transformable Multilink Aerial Robot

ICRA 2020poster

Regrasping is one of the most common and important manipulation skills used in our daily life. However, aerial regrasping has not been seriously investigated yet, since most of the aerial manipulator lacks dexterous manipulation abilities except for the basic pick-and-place. In this paper, we focus…

Cited by 38SourceScholar
2020

Learning of Key Pose Evaluation for Efficient Multi-contact Motion Planner

ICRA 2020poster

It is necessary to use not only foot but also hand, knee and other body parts to support body weight for locomotion in uneven terrain. Such multi-contact motion planning is an important research topic including lots of previous works; however, a problem of computational speed of planning is still re…

Cited by 3SourceScholar
2020

Learning of Tool Force Adjustment Skills by a Life-sized Humanoid using Deep Reinforcement Learning and Active Teaching Request

IROS 2020poster

The purpose of this study is to make life-sized humanoid robots acquire tool manipulation skills that require complicated force adjustment. The difficulty in acquisition of tool manipulation skills comes from the hardship in physical modeling. Recent research have revealed that deep reinforcement le…

Cited by 4SourceScholar
2020

Optimization-Based Posture Generation for Whole-Body Contact Motion by Contact Point Search on the Body Surface

RA-L 2020

Whole-body contact is an effective strategy for improving the stability and efficiency of the motion of robots. For robots to automatically perform such motions, we propose a posture generation method that employs all available surfaces of the robot links. By representing the contact point on the bo

Cited by 6SourceScholar
2019

Design, Modeling and Control of Fully Actuated 2D Transformable Aerial Robot with 1 DoF Thrust Vectorable Link Module

IROS 2019poster

We present a novel transformable multilinked aerial robot which consists of link modules with 1 DoF thrust vectoring mechanism. Commonly used UAV is underactuated due to its simplicity and high flight duration, but can not control the position and orientation independently. To overcome this problem,…

Cited by 33SourceScholar
2019

Generating a Key Pose Sequence Based on Kinematics and Statics Optimization for Manipulating a Heavy Object by a Humanoid Robot

IROS 2019poster

When a humanoid robot manipulates a heavy object, balance and heavy loads become problems. To solve these problems, we provide a method to generate a key pose sequence of the robot and the object which balance constraints and joint torque limits are kept. As we consider the configurations of both th…

Cited by 13SourceScholar
2019

Whole-Body Control of Humanoid Robot in 3D Multi-Contact under Contact Wrench Constraints Including Joint Load Reduction with Self-Collision and Internal Wrench Distribution

IROS 2019poster

In this paper, we propose an approach for online whole-body control of position-controlled humanoid robot with 3D multi-contact to cope with contact wrench constraints and joint overload. In our method, robots are controlled under contact wrench constraints with three features: 1) internal wrench co…

Cited by 3SourceScholar
2018

Simultaneous Planning and Estimation Based on Physics Reasoning in Robot Manipulation

ICRA 2018poster

For robots to autonomously achieve manipulation tasks in various scenes, advanced operational skills such as tool use, learning from demonstration, and multi-robot/human-robot cooperation are necessary. In this research, we devise a method for robots to realize such operational skills in a unified m…

Cited by 10SourceScholar
2018

Walking on a Steep Slope Using a Rope by a Life-Size Humanoid Robot

IROS 2018poster

In this paper, we propose methods for walking on a steep slope using a rope by a humanoid robot. There are two difficulties for walking on a steep slope without a rope. First, range of motion of ankle joints get limited. Second, feet of a robot slip on a steep slope. For these problems, using a rope…

Cited by 6SourceScholar
2017

Feasibility evaluation of object manipulation by a humanoid robot based on recursive estimation of the object's physical properties

ICRA 2017poster

Whole-body manipulation is necessary for a humanoid robot to achieve tasks such as carrying large objects. One difficulty for achieving a whole-body manipulation is that the robot needs to select the appropriate operation from a list of candidates, such as lifting, pushing, and tilting. The appropri…

Cited by 12SourceScholar
2017

Online estimation of object-environment constraints for planning of humanoid motion on a movable object

ICRA 2017poster

This paper shows a method for achieving multi-contact motion for a humanoid robot on a movable object, such as climbing of a stepladder. Recent research has developed methods for achieving multi-contact motion that considers various constraints, such as joint limits, torques, balance constraints, re…

Cited by 6SourceScholar
2016

Planning and execution of groping behavior for contact sensor based manipulation in an unknown environment

ICRA 2016

Groping behavior based on contact sensors is necessary for manipulation in an unknown environment. For those situations, it is effective for a robot to accumulate contact information as an environment map, and to plan the motions for executing the safe trial motion. We first propose a method of upda

Cited by 6SourceScholar
2015

Whole-body holding manipulation by humanoid robot based on transition graph of object motion and contact

IROS 2015poster

Whole-body holding manipulation is effective for carrying the handleless large object. In order to keep the object stability, the dexterous transition motion is necessary. From geometric and physical conditions of object manipulation, we propose the general method of generating the transition graph,…

Cited by 5SourceScholar
2015

Whole-body pushing manipulation with contact posture planning of large and heavy object for humanoid robot

ICRA 2015poster

Humanoid robot is able to execute various behavior to manipulate objects because of high degree-of-freedom around the whole-body. Although hands contact with objects and exert force in ordinary pushing motion by robot, pushing motion contacting with the object at various regions of whole-body has po…

Cited by 72SourceScholar