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Tomoki Anzai

16 accepted papers

2023

Design, Modeling, and Control of a Quadruped Robot SPIDAR: Spherically Vectorable and Distributed Rotors Assisted Air-Ground Quadruped Robot

RA-L 2023

Multimodal locomotion capability is an emerging topic in robotics field, and various novel mobile robots have been developed to enable the maneuvering in both terrestrial and aerial domains. Among these hybrid robots, several state-of-the-art bipedal robots enable the complex walking motion which is

Cited by 18SourceScholar
2022

Aerial Manipulation Using Contact with the Environment by Thrust Vectorable Multilinked Aerial Robot

ICRA 2022poster

In recent years, an increasing number of research works have been focusing on the manipulation by aerial robots. Previous works using aerial robots with robotic arms have two problems: underactuation and external disturbances. We propose the fully-actuated control method and motion strategy using co…

Cited by 10SourceScholar
2022

Design and Development for Humanoid-Vehicle Transformer Platform with Plastic Resin Structure and Distributed Redundant Sensors

ICRA 2022poster

The humanoid robot that can transform itself into a form according to its purpose requires whole-body motions with complex contact state transitions such as recovery from a fall and transition to the target form. To make the robot behavior in simulations closer to that in the real world for planning…

Cited by 14SourceScholar
2022

Learning Agile Hybrid Whole-body Motor Skills for Thruster-Aided Humanoid Robots

IROS 2022poster

Humanoid robots are versatile platforms with the potential for multiple locomotion skills. However, this contact-switched system with only two contact feet is fragile to keep balance in many scenarios. Inspired by birds combining legs and wings, we propose the novel hybrid locomotion behavior for th…

Cited by 5SourceScholar
2021

Fixed-root Aerial Manipulator: Design, Modeling, and Control of Multilink Aerial Arm to Adhere Foot Module to Ceilings using Rotor Thrust

ICRA 2021poster

Precise aerial manipulation is important for multirotor robots. For multirotors equipped with arms, the root pose error due to the floating body affects the precision at the end effector. Fixed-root approaches, such as perching on surfaces using the rotor suction force, are useful to address this pr…

Cited by 2SourceScholar
2021

Singularity-Free Aerial Deformation by Two-Dimensional Multilinked Aerial Robot With 1-DoF Vectorable Propeller

RA-L 2021

Two-dimensional multilinked structures can benefit aerial robots in both maneuvering and manipulation because of their deformation ability. However, certain types of singular forms must be avoided during deformation. Hence, an additional 1 Degrees-of-Freedom (DoF) vectorable propeller is employed in

Cited by 15SourceScholar
2020

Deep Gated Multi-modal Learning: In-hand Object Pose Changes Estimation using Tactile and Image Data

IROS 2020poster

For in-hand manipulation, estimation of the object pose inside the hand is one of the important functions to manipulate objects to the target pose. Since in-hand manipulation tends to cause occlusions by the hand or the object itself, image information only is not sufficient for in-hand object pose…

Cited by 46SourceScholar
2020

Online Motion Planning for Deforming Maneuvering and Manipulation by Multilinked Aerial Robot Based on Differential Kinematics

RA-L 2020

State-of-the-art work on deformable multirotor aerial robots has developed a strong maneuvering ability in such robots, whereas there is no versatile aerial robot that can perform both deforming maneuvering and aerial manipulation yet. However, a novel multilinked aerial robot presented in our previ

Cited by 21SourceScholar
2020

Stable Control in Climbing and Descending Flight under Upper Walls using Ceiling Effect Model based on Aerodynamics

ICRA 2020poster

Stable flight control under ceilings is difficult for multirotor Unmanned Aerial Vehicles (UAVs). The wake interaction between rotors and upper walls, called the "ceiling effect", causes an increase of rotor thrust. As a result of the thrust increase, multi-rotors are drawn upward abruptly and colli…

Cited by 18SourceScholar
2019

Achievement of Online Agile Manipulation Task for Aerial Transformable Multilink Robot

IROS 2019poster

Transformable aerial robots are favorable in aerial manipulation tasks for their flexible ability to change configuration during the flight. By assuming robot keeping in the mild motion, the previous researches sacrifice aerial agility to simplify the complex non-linear system into a single rigid 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

External Wrench Estimation for Multilink Aerial Robot by Center of Mass Estimator Based on Distributed IMU System

ICRA 2019poster

External wrench estimation is very helpful for aerial exploration and manipulation tasks. During the exploration, there might be unseen obstacles to cause dangerous collisions. The estimation of the external force and torque is also beneficial in aerial manipulation tasks. In this paper, we present…

Cited by 20SourceScholar
2018

Aerial Grasping Based on Shape Adaptive Transformation by HALO: Horizontal Plane Transformable Aerial Robot with Closed-Loop Multilinks Structure

ICRA 2018poster

In this paper, we present the achievement of aerial grasping by shape adaptive transformation to the object shape, using a novel transformable aerial robot called HALO: Horizontal Plane Transformable Aerial Robot with Closed-loop Multilinks Structure. Aerial manipulation is an active research area a…

Cited by 41SourceScholar
2018

Design, Modeling, and Control of an Aerial Robot DRAGON: A Dual-Rotor-Embedded Multilink Robot With the Ability of Multi-Degree-of-Freedom Aerial Transformation

RA-L 2018

In this letter, we introduce a novel transformable aerial robot called DRAGON, which is a dual-rotor-embedded multilink robot with the ability of multi-degree-of-freedom (DoF) aerial transformation. The new aerial robot can control the full pose in SE(3) regarding the center of gravity (CoG) of mult

Cited by 160SourceScholar
2018

Flight Motion of Passing Through Small Opening by DRAGON: Transformable Multilinked Aerial Robot

IROS 2018poster

In this paper, we introduce the achievement of the flight motion to pass through small opening by the multilinked and transformable aerial robot. Previous works about such motion are based on under-actuated multirotors, indicating that aggressive maneuvering is necessary condition. This involves two…

Cited by 21SourceScholar
2017

Multilinked multirotor with internal communication system for multiple objects transportation based on form optimization method

IROS 2017poster

In this paper, we show the achievement of a transformable aerial robot with internal communication system for multiple objects transportation. As it is not easy to make the flight endurance of an aerial robot longer, we study the problem to transport multiple objects at the same time to improve the…

Cited by 33SourceScholar