arrow
返回

Head stabilization in a humanoid robot: models and implementations

delete2016-07-01
delete13
PRE
AI
E
Egidio Falotico *
N
Nino Cauli
P
Przemyslaw Kryczka
K
Kenji Hashimoto
A
Alain Berthoz
A
Atsuo Takanishi
P
Paolo Dario
C
Cecilia Laschi
DOI:10.1007/s10514-016-9583-zdelete
delete原文链接
delete原文求助
delete分享
delete收藏
摘要

摘要

En 中文
Neuroscientific studies show that humans tend to stabilize their head orientation, while accomplishing a locomotor task. This is beneficial to image stabilization and in general to keep a reference frame for the body. In robotics, too, head stabilization during robot walking provides advantages in robot vision and gaze-guided locomotion. In order to obtain the head movement behaviors found in human walk, it is necessary and sufficient to be able to control the orientation (roll, pitch and yaw) of the head in space. Based on these principles, three controllers have been designed. We developed two classic robotic controllers, an inverse kinematics based controller, an inverse kinematics differential controller and a bio-inspired adaptive controller based on feedback error learning. The controllers use the inertial feedback from a IMU sensor and control neck joints in order to align the head orientation with the global orientation reference. We present the results for the head stabilization controllers, on two sets of experiments, validating the robustness of the proposed control methods. In particular, we focus our analysis on the effectiveness of the bio-inspired adaptive controller against the classic robotic controllers. The first set of experiments, tested on a simulated robot, focused on the controllers response to a set of disturbance frequencies and a step function. The other set of experiments were carried out on the SABIAN robot, where these controllers were implemented in conjunction with a model of the vestibulo-ocular reflex (VOR) and opto-kinetic reflex (OKR). Such a setup permits to compare the performances of the considered head stabilization controllers in conditions which mimic the human stabilization mechanisms composed of the joint effect of VOR, OKR and stabilization of the head. The results show that the bio-inspired adaptive controller is more beneficial for the stabilization of the head in tasks involving a sinusoidal torso disturbance, and it shows comparable performances to the inverse kinematics controller in case of the step response and the locomotion experiments conducted on the real robot.
Keyword:
Humanoid robot
Head stabilization
Gaze stabilization
VOR
VCR
AI总结

AI总结

对已上传原文的论文进行重点信息的提取,主要内容包括:简要概述、研究摘要、背景介绍、关键亮点、图文解析、展望与总结。

期刊

Autonomous Robots 封面图
Autonomous Robots
IF:
4.3
论文数:
1.7K
被引数:
5.0K

机构

W
Waseda University
学者数:
1.0W
论文数: 8.7K
被引数: 8.3K
I
istituto italiano di tecnologia - iit
学者数:
9.1K
论文数: 6.9K
被引数: 8
U
Universite PSL
学者数:
3.3W
论文数: 2.5W
被引数: 91
学者 查看更多机构
引用论文

引用论文

err2001-01-01
err0
PREAI
errV. B. Kopylov; Yu. Yu. Gavronskaya
err分享
err收藏
Leveraging human gait characteristics towards self-sustained operation of low-power mobile devices
err2014-03-01
err0
PREAI
errVishwa Goudar; James B. Wendt; Miodrag Potkonjak; Zhi Ren; Paul Brochu; Qibing Pei
err分享
err收藏
Planar ordering in the plaquette-only gonihedric Ising model
err2015-05-01
err0
errOAAI
errMarco Mueller; Wolfhard Janke; Desmond A. Johnston
err分享
err收藏
err
IF0
err
err0
PREAI
err
err分享
err收藏
Neurosarcoidosis
err1993-01-01
err0
PREAI
errThomas F. Scott
err分享
err收藏
学者 查看更多内容