Method for Evaluating the Force Controllability of Human Finger

Y. Fujii, T. Yamaguchi
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Abstract

The ability of human finger in controlling force against impact load is determined by means of a novel practical method, a variation of the levitation mass method. In the method, a mass that is levitated with a pneumatic linear bearing, and hence encounters negligible friction, is made to collide with an object under test. During the collision the Doppler frequency shift of a laser beam reflecting from the mass is accurately measured using an optical interferometer. The velocity, position, acceleration and inertial force of the mass are calculated from the measured time-varying Doppler shift. The method is characterized by the facts that the preparation for the test is easy and the measurement accuracy is high. The importance of the visual information is also determined by means of conducting the tests under the condition of either the subject's eyes opened or closed
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评价人手指力可控性的方法
用一种新颖实用的方法,即悬浮质量法的变化,测定了人的手指对冲击载荷的控制力。在该方法中,用气动线性轴承悬浮的质量,因此遇到可以忽略不计的摩擦,与被测物体发生碰撞。在碰撞过程中,用光学干涉仪精确测量了从质量反射的激光束的多普勒频移。根据测量的时变多普勒频移,计算出物体的速度、位置、加速度和惯性力。该方法具有试验准备简单、测量精度高的特点。视觉信息的重要性也通过在受试者睁开或闭上眼睛的情况下进行测试来确定
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