首页> 外文期刊>IEEE Robotics and Automation Letters >Electromagnetic Haptic Feedback System for Use With a Graphical Display Using Flat Coils and Sensor Array
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Electromagnetic Haptic Feedback System for Use With a Graphical Display Using Flat Coils and Sensor Array

机译:电磁触觉反馈系统,用于使用平线圈和传感器阵列的图形显示器使用

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We have developed a haptic interaction system which wirelessly generates 3D forces onto a small magnet which can be fixed to a user & x0027;s fingertip or a handheld stylus. Magnet position sensing and haptic force generation can both be performed through a thin screen, and the actuation and sensing components of the system are sufficiently thin and compact to be easily mounted behind the screen in the same enclosure. In this manner, the system is particularly well suited for use for co-located haptic and graphic display, with 3D force feedback added to an interactive display. The purpose of the work is to describe, analyze, and validate a method and device to generate haptic force feedback on a magnet held near a display screen using thin flat arrays of coils and sensors. The location of the magnet during haptic interaction is obtained by an array of Hall effect sensors. Flat rectangular coils are used to generate Lorentz forces on the interaction magnet and can act in combination to produce 3D forces in any direction, both parallel and normal to the screen surface. The active area of the haptic interaction system prototype is approximately 120 & x00D7; 120 & x00A0;mm, with effective force generation and position sensing from the screen surface to an elevation of approximately 15 & x00A0;mm. The localization methods do not depend on the size, shape, or magnetization strength of the magnet, so that larger or smaller magnets may be used for greater forces or more ease of manipulation, without modifying the software other than the force actuation model. The design of the system is presented, including modeling and analysis of the sensing and actuation methods. Experimental results are given for field sensing, magnet localization, and haptic interaction with simulated objects. Forces up to 0.3 & x00A0;N are demonstrated to be generated in different specific desired directions while sensing planar magnet position to an accuracy within approximately 2.0 mm.
机译:我们开发了一种触觉交互系统,它无线地产生3D力在一个小磁体上,该磁铁可以固定到用户和X0027; S指尖或手持式手写笔。磁体位置感测和触觉力产生都可以通过薄屏幕进行,并且系统的致动和感测部件足够薄,紧凑,以在同一外壳中容易地安装在屏幕后面。以这种方式,该系统特别适用于用于共同定位的触觉和图形显示器,3D力反馈添加到交互式显示器。该工作的目的是描述,分析和验证使用薄的线圈和传感器的薄扁平阵列在显示屏附近保持触觉力反馈的方法和装置。触觉相互作用期间磁铁的位置通过霍尔效应传感器阵列获得。平坦的矩形线圈用于在相互作用磁体上产生Lorentz力,并且可以组合起作用以在任何方向上产生3D力,两者都是平行和正常的屏幕表面。触觉交互系统原型的有源区约为120&X00D7; 120&x00a0; mm,具有从屏幕表面的有效力产生和位置感测到大约15&x00a0; mm的升高。本地化方法不依赖于磁体的尺寸,形状或磁化强度,从而可以使用更大或更小的磁体来用于更大的力或更容易操作,而不改变除力致动模型之外的软件。提出了系统的设计,包括对传感和致动方法的建模和分析。对实场感测,磁体定位和与模拟物体的触觉相互作用提供了实验结果。强制高达0.3&x00a0; n被证明在不同的特定期望的方向上产生,同时将平面磁体位置感测到大约2.0mm的精度。

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