IEEE Trans Haptics. 2024 Jan-Mar;17(1):8-13. doi: 10.1109/TOH.2023.3349307. Epub 2024 Mar 21.
This study aims to represent fine texture differences in pencil hardness using intensity segment modulation (ISM), a sensory equivalent conversion method of vibration from high to low frequencies. This method enables the presentation of delicate tactile sensations even with small transducers. We integrated this approach in the world's thinnest ultra-thin PZT-MEMS vibrator with a stylus-type device. The vibration waveforms of four types of pencil hardness were captured under the same conditions, and the differences in the frequency components were confirmed. We compared the fine texture feelings under raw signal, ISM, and ISM below 1 kHz conditions by conducting discrimination tests and subjective similarity evaluations. The results showed that ISM could reproduce similar feelings of the pencil hardness.
本研究旨在利用强度分段调制(ISM)来表示铅笔硬度的细微纹理差异,这是一种将高频振动转换为低频振动的感官等效方法。即使使用小的换能器,该方法也能呈现出细腻的触觉感受。我们将这种方法集成到世界上最薄的超轻薄 PZT-MEMS 振动器和针状设备中。在相同条件下采集了四种铅笔硬度的振动波形,并确认了频率分量的差异。我们通过判别测试和主观相似性评估比较了原始信号、ISM 和 1 kHz 以下 ISM 条件下的细微纹理感觉。结果表明,ISM 可以再现铅笔硬度的相似感觉。