论文标题

通过磁场控制的非接触触觉显示

Contactless Haptic Display Through Magnetic Field Control

论文作者

Lu, Xiong, Yan, Yuxing, Qi, Beibei, Qian, Huang, Sun, Junbin, Quigley, Aaron

论文摘要

触觉渲染使人们能够在虚拟环境中触摸,感知和操纵虚拟物体。本文使用六个级联的相同的空心磁盘电磁体和一个附着在操作员手指上的小型永久磁铁,本文通过磁场控制提出并开发了不受束缚的触觉界面。六个级联电磁体内部的同心孔提供了工作区,其中使用Microsoft Kinect传感器跟踪永久磁铁的3D位置。实时计算六个级联电磁体的驱动电流,以产生所需的磁力。基于FEA(有限元分析)模拟的离线数据确定磁力,驱动电流和永久磁体位置之间的关系。进行了一组实验,包括虚拟对象识别实验,虚拟表面识别实验和用户感知评估实验,以证明所提出的系统,其中Microsoft Hololens全息眼镜用于视觉渲染。提出的磁性触觉显示导致了天然触觉渲染应用的不受束缚和非接触式界面,从而克服了基于工具的传统触觉设备中机械链接的约束。

Haptic rendering enables people to touch, perceive, and manipulate virtual objects in a virtual environment. Using six cascaded identical hollow disk electromagnets and a small permanent magnet attached to an operator's finger, this paper proposes and develops an untethered haptic interface through magnetic field control. The concentric hole inside the six cascaded electromagnets provides the workspace, where the 3D position of the permanent magnet is tracked with a Microsoft Kinect sensor. The driving currents of six cascaded electromagnets are calculated in real-time for generating the desired magnetic force. Offline data from an FEA (finite element analysis) based simulation, determines the relationship between the magnetic force, the driving currents, and the position of the permanent magnet. A set of experiments including the virtual object recognition experiment, the virtual surface identification experiment, and the user perception evaluation experiment were conducted to demonstrate the proposed system, where Microsoft HoloLens holographic glasses are used for visual rendering. The proposed magnetic haptic display leads to an untethered and non-contact interface for natural haptic rendering applications, which overcomes the constraints of mechanical linkages in tool-based traditional haptic devices.

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