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Model-based analysis of impedance perception characteristics in man-machine interface

机译:人机界面中阻抗感知特性的基于模型的分析

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In this paper, we analyze the influence of dynamical characteristics of man-machine interfaces on both impedance perception levels and motor control characteristics of humans. In order to estimate dynamical characteristics of man-machine interfaces, humans make use of the coupling characteristics between sensory systems and motor systems in their bodies. We propose a new model-based estimation method of impedance perception level of related with motor control characteristics of the body. For the experiment, we used a 6 degree-of-freedom manipulator to simulate different impedances. Based on the experimental results that show proportional relation between the differences of impedance perception levels and changes of the gain characteristics of the motor control transfer function model, the power spectrum density of the developed human model can be applied for on-line estimation of the impedance perception level of human in man-machine interface. The effectiveness of the proposed method is verified through comparison with subjective evaluation results.
机译:在本文中,我们分析了人机界面的动态特性对人的阻抗感知水平和电机控制特性的影响。为了估计人机界面的动态特性,人类利用了人体中感觉系统和运动系统之间的耦合特性。我们提出了一种新的基于模型的与人体运动控制特性有关的阻抗感知水平的估计方法。对于实验,我们使用了6自由度机械手来模拟不同的阻抗。基于表明阻抗感知水平的差异与电动机控制传递函数模型的增益特性变化之间成比例关系的实验结果,可以将开发的人体模型的功率谱密度应用于阻抗的在线估算人机界面中人的感知水平。通过与主观评估结果进行比较,验证了所提方法的有效性。

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