Effects of Data-hold Methods on Stability of Haptic System

데이터 홀드 방식에 따른 햅틱 시스템의 안정성 분석

  • Lee, Kyungno (Department of Energy System Engineering, Korea National University of Transportation)
  • 이경노 (한국교통대학교 에너지시스템공학과)
  • Received : 2012.10.08
  • Accepted : 2012.11.02
  • Published : 2012.11.30

Abstract

This paper presents the effect of data-hold methods on stability of haptic system with a virtual wall. When a human operator interacts with virtual wall, the lager the stiffness of the virtual wall is, the more realistic the operator feels that the virtual wall is. However, if the stiffness of the virtual wall becomes extremely large, the system may be unstable. When a virtual wall is designed, it is necessary to analyze the maximum available stiffness to guarantee a stable haptic interaction. The simulation model in this paper is developed based on the haptic device model, sampler, a virtual wall model, and data hold methods to compute the maximum stiffness for stability. The effectiveness of the simulation is evaluated through comparing the results of previous studies with the results of this simulation. In addition, the effects of two data hold methods, that is, zero-order hold (ZOH) and first-order hold (FOH) on the stability are analyzed and the values of the maximum available stiffness are compared through the simulation.

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