arrow
Return

Controller design for human-robot interaction

delete2007-10-23
delete17
delete
OA
AI
E
Eric Meisner *
V
Volkan Isler
J
Jeff Trinkle
DOI:10.1007/s10514-007-9054-7delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
Many robotics tasks require a robot to share the same workspace with humans. In such settings, it is important that the robot performs in such a way that does not cause distress to humans in the workspace. In this paper, we address the problem of designing robot controllers which minimize the stress caused by the robot while performing a given task. We present a novel, data-driven algorithm which computes human-friendly trajectories. The algorithm utilizes biofeedback measurements and combines a set of geometric controllers to achieve human friendliness. We evaluate the comfort level of the human using a Galvanic Skin Response (GSR) sensor. We present results from a human tracking task, in which the robot is required to stay within a specified distance without causing high stress values.
Keywords:
biofeedback
human-robot interaction
assistive robotics

Journal

Autonomous Robots cover
Autonomous Robots
IF:
4.3
Papers:
1.7K
Citations:
5.0K

Organization

R
rensselaer polytechnic institute
Scholars:
7.0K
Papers: 6.5K
Citations: 6
Cited Papers

Cited Papers

Robot-assisted wayfinding for the visually impaired in structured indoor environments
err2006-06-15
err96
PREAI
errKulyukin, Vladimir; Gharpure, Chaitanya; Nicholson, John; Osborne, Grayson
errShare
errSave
Early child health in an informal settlement in the Peruvian Amazon
err2016-10-12
err0
errOAAI
errGwenyth O. Lee; Maribel Paredes Olortegui; Gabriela Salmón-Mulanovich; Pablo Peñataro Yori; Margaret Kosek
errShare
errSave
errShare
errSave
In vivo efficacy of biapenem with ME1071, a novel metallo-β-lactamase (MBL) inhibitor, in a murine model mimicking ventilator-associated pneumonia caused by MBL-producing Pseudomonas aeruginosa
err2013-09-01
err0
PREAI
errKoichi Yamada; Katsunori Yanagihara; Norihito Kaku; Yosuke Harada; Yohei Migiyama; Kentaro Nagaoka; Yoshitomo Morinaga; Shigeki Nakamura; Yoshifumi Imamura; Taiga Miyazaki; Koichi Izumikawa; Hiroshi Kakeya; Hiroo Hasegawa; Akira Yasuoka; Shigeru Kohno
errShare
errSave
Methods of Trace Amine Analysis in Mammalian Brain
err2016-01-01
err0
PREAI
errH.A. Khan; Q. Ullah; A. Ahmad; A.S. Alhomida; S.H. Al Rokayan
errShare
errSave
researcher View more