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Design and evaluation of a measuring system for human force perception parameters

机译:人体感知参数测量系统的设计与评估

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摘要

The investigation of vibrotactile perception has been a common area of haptic research for some decades. Nevertheless has haptic sensation been fairly examined metrologically. This is probably due to the high demands on the design of a measurement system regarding the combination of bandwidth, accuracy (<1 mN) and disposable energy (several 100 W for high frequency, high amplitude forces). In this paper, a force perception measurement system based on a dynamic force source is presented. It is designed to deliver sinusoidal forces with amplitude of up to 10 N at frequencies of up to 1000 Hz, while deflection is depending on mass load. For example, a mass of 50 g can still be driven with deflections of 100 μm at 1 kHz. Forces are generated using an electrodynamic actuator. An analogue PID controller in combination with a force prediction model based on concentrated network parameters ensures an accuracy of less than 1 mN at the driving point. Despite force, deflection and velocity of the system's moving parts are monitored. The system is in use to measure the absolute threshold of force perception with a bandwidth of up to 1000 Hz. Super-threshold measurements will include the Just Noticeable Difference (JND) and curves of equal perception. The system is designed to measure normal and lateral forces at the fingertip of a single finger and of precision and power grips of the human hand. First measurements of vibrotactile perception thresholds prove the systems capability to cover the relevant bandwidth and dynamics for human haptic interaction.
机译:几十年来,对触觉感知的研究一直是触觉研究的普遍领域。然而,已经对触觉进行了计量方面的合理检查。这可能是由于对带宽,精度(<1 mN)和可支配能量(对于高频,高振幅力为100 W)的组合对测量系统设计的要求很高。本文提出了一种基于动态力源的力觉测量系统。它的设计目的是在高达1000 Hz的频率下提供振幅最大为10 N的正弦力,而挠度取决于质量负载。例如,仍然可以在1 kHz下以100μm的挠度驱动50 g的质量。使用电动致动器产生力。模拟PID控制器与基于集中网络参数的力预测模型相结合,可确保在驱动点的精度小于1 mN。尽管有力,但仍会监控系统活动部件的挠度和速度。该系统用于测量力感知的绝对阈值,带宽高达1000 Hz。超阈值测量将包括“可察觉的差异”(JND)和同等感知的曲线。该系统旨在测量单根手指指尖的法向力和横向力,以及人手的精确力和力量。触觉感知阈值的首次测量证明了系统能够覆盖人类触觉交互的相关带宽和动态。

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