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首页> 外文期刊>Mechatronics: The Science of Intelligent Machines >Design and development of a pulsed electromagnetic micro-actuator for 3D virtual tactile displays
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Design and development of a pulsed electromagnetic micro-actuator for 3D virtual tactile displays

机译:用于3D虚拟触觉显示器的脉冲电磁微执行器的设计和开发

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摘要

The design and analysis of a miniature electromagnetic actuator for use in a novel virtual tactile display is described. The actuator operates in repulsive mode so that it can be used for vibro-tactile stimulation of a human fingertip. Pulsed current and permanent magnet based approaches are investigated and compared. Four frequencies (10, 50, 100, and 150 Hz) were used to test the perception limit of three human subjects. The results indicated that the perception is not strongly dependent on frequency in the test range. The required stimulation energy of individual pulses was estimated to be below 57 micro-Joules, while the average peak-force needed for reliable stimulation was 59 milli-Newtons. The perception of simple test shapes was also tested by attaching the actuator onto the fingertip of the human subjects and turning it on and off as a function of its position.
机译:描述了一种用于新型虚拟触觉显示器的微型电磁致动器的设计和分析。致动器以排斥模式操作,因此可以用于人类指尖的振动式刺激。研究并比较了基于脉冲电流和永磁体的方法。四个频率(10、50、100和150 Hz)用于测试三个人类受试者的感知极限。结果表明,知觉并不强烈依赖于测试范围内的频率。估计单个脉冲所需的刺激能量低于57微焦耳,而可靠刺激所需的平均峰值力为59毫牛顿。通过将执行器安装在人类受试者的指尖上并根据其位置打开和关闭它,还可以测试简单测试形状的感知能力。

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