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The Influence of Discrimination Strategy on the JND in Human Haptic Perception of Manipulator Stiffness

机译:区分策略对机械手刚度的人类触觉感知中的JND的影响

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To better design and evaluate simulator control loading systems, humans' JND in the haptic perception of manipulator stiffness was investigated. To assess changes in such a mechanical property, humans must infer the change through changes in perceived contact force and/or manipulator displacement. To study the relative roles of these two perceptions, we measured stiffness JNDs of seven participants through a forced-choice stiffness discrimination procedure, on three conditions which we referred to as the force, displacement and free conditions. In the force condition, the manipulator displacement was fixed and subjects could only base their stiffness discrimination on changes in the contact force, and likewise in the displacement condition, discrimination was on the basis of changes in the manipulator displacement while the contact force was fixed. In the free condition subjects could uses either or both force and displacement cues to discriminate between different stiffness settings. The lowest stiffness JND was observed in the force condition, followed by a similar results from the free condition. The highest JND level and a poor consistency of results among individuals were obtained in the displacement condition. Subjects indicated that their stiffness discrimination in the free condition was based on the force comparison. To validate this finding, we used two models, one assumed force differences as a criterion for detection and the other assumed the displacement, to estimate the experimental results. Model comparisons indicated that subject's stiffness discrimination is largely based on detection of force differences.
机译:为了更好地设计和评估模拟器控制加载系统,研究了人类对机械手刚度的触觉感知的JND。为了评估这种机械性能的变化,人类必须通过感知到的接触力和/或操纵器位移的变化来推断变化。为了研究这两种感觉的相对作用,我们通过强制选择刚度判别程序在三个条件下测量了七个参与者的刚度JND,我们将这三个条件称为力,位移和自由条件。在受力状态下,机械手的位移是固定的,受试者只能根据接触力的变化进行刚度判别,同样,在受力状态下,接触力是固定的,辨别也是基于机械手位移的变化。在自由状态下,受试者可以使用力和位移提示之一或两者,以区分不同的刚度设置。在受力状态下观察到最低刚度JND,其后在自由状态下得到相似的结果。在置换条件下,获得了最高的JND水平和个体之间结果的一致性差。受试者表示,他们在自由状态下的刚度判别是基于力的比较。为了验证这一发现,我们使用了两个模型来估计实验结果,其中一个假定力差作为检测标准,另一个假定位移。模型比较表明,受试者的刚度辨别主要基于对力差的检测。

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