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首页> 外文期刊>Sensors and Actuators, A. Physical >Resonance frequency selective electromagnetic actuation for high-resolution vibrotactile displays
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Resonance frequency selective electromagnetic actuation for high-resolution vibrotactile displays

机译:高分辨率振动显示器的共振频率选择性电磁致动

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摘要

Vibrotactile displays offer significant potential for conveying information through the sense of touch in a wide variety of applications. Spatial resolution of these displays is limited by the large size of actuators. We present a new selective electromagnetic actuation technique to control the vibrations of multiple tactile elements using a single coil based on their individual mechanical resonance frequencies. This technique allows low-cost and highly reliable implementation of many tactile elements on a smaller area. A prototype is manufactured using 3D-printed tactile elements and off-the-shelf coils to characterize the proposed technique. This prototype successfully increases the resolution by 100 % from 16 to 32 tactile pixels (taxels) on a 25 cm(2) pad, without sacrificing other performance metrics such as refresh rates and power consumption. The multiphysics finite element analysis developed for this new actuation technique are experimentally validated by optical vibrometry measurements. This work demonstrates the capability of resonance-selective electromagnetic actuator in developing high-resolution low-cost vibrotactile displays. (C) 2019 Elsevier B.V. All rights reserved.
机译:VibrotActive Displays通过各种应用中的触摸感提供了重要的潜力。这些显示器的空间分辨率受到大尺寸执行器的限制。我们提出了一种新的选择性电磁致动技术,以基于其各自的机械谐振频率来控制单个线圈的多个触觉元件的振动。该技术允许在较小区域上的许多触觉元素的低成本和高度可靠的实现。使用3D印刷触觉元件和搁板的线圈制造原型,以表征所提出的技术。该原型成功将分辨率从16厘米(2)垫上的16至32个触觉像素(Taxels)成功增加了100%,而不会牺牲其他性能指标,例如刷新速率和功耗。开发用于这种新的致动技术的多体学有限元分析通过光学振动测量进行了实验验证。这项工作展示了共振选择性电磁致动器在开发高分辨率低成本振动触觉显示器中的能力。 (c)2019 Elsevier B.v.保留所有权利。

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