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Influence of mechanical impedance of human arm on the stability of haptic rendering

机译:人体机械阻抗对触觉渲染稳定性的影响

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Research shows that haptic rendering leads to a more realistic virtual reality system. Being an important part of the system, human operator directly affects the stability of haptic rendering. In this paper, the influence of human, i.e., the mechanical impedance of his arm, on the stability of haptic rendering is studied through experiment with virtual wall haptic system based on FALCON device. Several subjects participate in the experiment and are instructed to a series of interactions with the virtual wall. During the interactions, different interference force fields are set to change the movement of the arm and the mechanical impedance of human arm is tuned by background force fields. Experiment results indicate that the influence brought by interference force are weakened by background force, which means the mechanical impedance of human arm h can be tuned and has the potential to improve the stability of haptic rendering systems.
机译:研究表明,触觉渲染导致了更加逼真的虚拟现实系统。作为系统的重要组成部分,操作员直接影响触觉渲染的稳定性。本文通过基于FALCON装置的虚拟墙触觉系统的实验,研究了人的手臂机械阻抗对触觉渲染稳定性的影响。有几名受试者参加了实验,并被指示与虚拟墙进行一系列互动。在交互过程中,将设置不同的干扰力场以更改手臂的运动,并通过背景力场来调整人手臂的机械阻抗。实验结果表明,背景力减弱了干扰力带来的影响,可以调节人手臂h的机械阻抗,具有提高触觉渲染系统稳定性的潜力。

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