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INTENSITY PERCEPTION FOR COMPLEX VERTICAL WHOLE-BODY VIBRATION

机译:复杂的垂直整体振动的强度感知

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Whole-body vibrations are an integral part of daily life experience. A thorough understanding of human vibration perception is necessary, e.g., for both the design of multi-modal virtual environments as well as the evaluation of comfort in the automotive industry. In this study, intensity perception for whole-body vibrations near threshold has been measured using amplitude modulated signals as well as narrow band noises. Stevens' exponents have been calculated showing a significant dependence on frequency between 31.5 Hz and 125 Hz with higher frequencies leading to lower Stevens' exponents. Amplitude modulation does not have an effect on intensity perception. The use of narrow band noise leads to bigger differences among Stevens' exponents compared to those of sinusoidal signals. It is concluded that perceptual data from experiments with sinusoidal signals can be used to model the intensity perception of modulated signals, but adjustments have to be made for noisy signals.
机译:全身振动是日常生活经验中不可或缺的一部分。例如,对于多模式虚拟环境的设计以及汽车行业的舒适性评估,都必须对人的振动感知有透彻的了解。在这项研究中,已使用振幅调制信号以及窄带噪声对接近阈值的全身振动的强度感知进行了测量。史蒂文斯的指数已显示出对31.5 Hz至125 Hz之间频率的显着依赖性,较高的频率导致史蒂文斯的指数较低。幅度调制对强度感知没有影响。与正弦信号相比,使用窄带噪声会导致史蒂文斯指数之间的差异更大。结论是,来自正弦信号实验的感知数据可用于对调制信号的强度感知进行建模,但必须对噪声信号进行调整。

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