English

Towards an understanding of how humans perceive stiffness during bimanual exploration

Human-Computer Interaction 2021-07-26 v1 Robotics

Abstract

In this paper, an experimental testbed and associated psychophysical paradigm are presented for understanding how people discriminate torsional stiffness using wrist rotation about their forearm. Featured in the testbed are two 1-DoF rotary kinesthetic haptic devices. An adaptive staircase was used to evaluate JNDs for a stiffness discrimination task where participants explored virtual torsion springs by rotating their forearms. The JNDs were evaluated across seven different conditions, under four different exploration modes: bimanual, unimanual, bimanual feedback for unimanual displacement, and unimanual feedback for bimanual displacement. The discrimination results will inform future investigation into understanding how stiffness percepts vary.

Keywords

Cite

@article{arxiv.2107.11172,
  title  = {Towards an understanding of how humans perceive stiffness during bimanual exploration},
  author = {Mohit Singhala and Jacob Carducci and Jeremy D. Brown},
  journal= {arXiv preprint arXiv:2107.11172},
  year   = {2021}
}

Comments

Accepted as Works-in-Progress paper at Haptics Symposium 2020