论文标题
灵活的螺旋形 - 图作为多功能触觉界面
A flexible spiraling-metasurface as a versatile haptic interface
论文作者
论文摘要
触觉反馈是遵循视觉提示的最重要的感觉界面。开发起充当触觉接口的薄柔韧性表面对于增强虚拟现实,可穿戴设备,机器人技术和假体非常重要。例如,在假体中添加触觉反馈界面可以改善其在截肢者中的接受。靶向通过机械触发器的皮肤感觉的最新可编程接口受到感觉反馈,繁琐的机制或操作频率狭窄的限制。在这里,我们提出了一个灵活的跨表面,作为一种通用的触觉界面,能够在频率广泛的频率下在人体皮肤上产生复杂的触觉图案。元表面由多个可以局部扩增输入位移和力的“像素”组成。这些像素中的每一个都编码各种变形模式,能够在接触时产生不同的感觉。元表面可以将包含多个频率的谐波信号转换为复杂的预编程触觉模式。我们的发现是通过对人类候选人进行的用户研究证实的,可以为可穿戴和机器人界面开放新的途径。
Haptic feedback is the most significant sensory interface following visual cues. Developing thin, flexible surfaces that function as haptic interfaces is important for augmenting virtual reality, wearable devices, robotics and prostheses. For example, adding a haptic feedback interface to prosthesis could improve their acceptance among amputees. State of the art programmable interfaces targeting the skin feel-of-touch through mechano-receptors are limited by inadequate sensory feedback, cumbersome mechanisms or narrow frequency of operation. Here, we present a flexible metasurface as a generic haptic interface capable of producing complex tactile patterns on the human skin at wide range of frequencies. The metasurface is composed of multiple "pixels" that can locally amplify both input displacements and forces. Each of these pixels encodes various deformation patterns capable of producing different sensations on contact. The metasurface can transform a harmonic signal containing multiple frequencies into a complex preprogrammed tactile pattern. Our findings, corroborated by user studies conducted on human candidates, can open new avenues for wearable and robotic interfaces.