Dynamic and Accurate Force Feedback for Electromagnetic Haptic Display

Xiaosa Li, Zhiyong Yuan, Jianhui Zhao, Xiangyun Liao
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Abstract

As the implementation way of bilateral interactions in virtual reality, haptic display can not only bring users touch feedback for the better sense of immersion, but also enable them to operate objects in virtual environments on their own initiative. In this article, we present an electromagnetic haptic display system, which performs contactless forces on the magnetic stylus in the magnetic field excited by three iron-core coils with adjustable position and orientation, for the production of haptic feedback. High-frequency pulses and H-bridge circuits are employed for the rapid current drive in coils, and it is proved that the refresh rate of our haptic device is able to fulfill the simulation of dynamic haptic feedback like push, pull and squeeze. In addition, the processes of current generation in single coil and magnetic field generation for coil array are clearly analyzed, and a Varying-Model Predictive Control algorithm is proposed, where the predictive model is updated adaptively according to the real-time motions of stylus and coils, to generate the required magnetic field smoothly and precisely. Experiments show that the magnetic flux density measured at the position of stylus follows the reference value well in three dimensions with the aid of the proposed algorithm, and dynamic and accurate electromagnetic haptic display can be achieved.
电磁触觉显示的动态准确力反馈
触觉显示作为虚拟现实中双边交互的实现方式,不仅可以为用户带来更好的沉浸感的触摸反馈,还可以让用户在虚拟环境中主动操作物体。在本文中,我们提出了一种电磁触觉显示系统,该系统由三个位置和方向可调节的铁芯线圈在磁场中对磁性触控笔施加非接触力,以产生触觉反馈。采用高频脉冲和h桥电路在线圈中实现快速电流驱动,并证明了该触觉装置的刷新率能够满足推、拉、挤等动态触觉反馈的仿真。此外,分析了单线圈电流产生和线圈阵列磁场产生的过程,提出了一种变模型预测控制算法,该算法根据手写笔和线圈的实时运动自适应更新预测模型,以平滑准确地产生所需磁场。实验表明,该算法测量的触控笔位置的磁通密度在三维空间上与参考值吻合较好,可以实现动态、准确的电磁触觉显示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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