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Stabilization of SAW atomizer for a wearable olfactory display

机译:用于可穿戴式嗅觉显示器的SAW雾化器的稳定性

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An olfactory display, a gadget to generate odors and to deliver them to a user's nose, is being developed since it is expected to become useful in human interface. We developed an olfactory display using a surface acoustic wave (SAW) device and micropumps. It can atomize odorant liquid based on SAW streaming phenomenon. However, we found that atomization capability of the SAW atomizer deteriorated in a few tens of seconds after the start of driving the SAW atomizer. We hypothesized that SAW velocity change due temperature change of SAW device caused resonant frequency shift. Therefore, we constructed frequency correction system using a FPGA. We evaluated the system using a quartz crystal microbalance (QCM) gas sensor. In the experiment, the atomization capability was kept for longtime while SAW device driven with the frequency correction system whereas the atomization capability deteriorated in 15 seconds without the correction system. Thus, we concluded that the constructed system was useful and should be embedded into our wearable olfactory display.
机译:嗅觉显示器,一种产生气味并将其传递到使用者鼻子的工具,正在开发中,因为它有望在人机界面中变得有用。我们使用表面声波(SAW)设备和微型泵开发了一种嗅觉显示器。它可以基于声表面波流化现象雾化加味剂液体。但是,我们发现,在开始驱动SAW雾化器后的几十秒内,SAW雾化器的雾化能力下降了。我们假设由于SAW器件的温度变化引起的SAW速度变化会引起谐振频率偏移。因此,我们使用FPGA构建了频率校正系统。我们使用石英晶体微量天平(QCM)气体传感器对系统进行了评估。在实验中,在使用频率校正系统驱动SAW装置时,雾化能力可长期保持,而在没有校正系统的情况下,雾化能力会在15秒内恶化。因此,我们得出的结论是,构建的系统很有用,应该嵌入到我们的可穿戴嗅觉显示器中。

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