Characterizing opto-electret based paper speakers by using a real-time projection Moiré metrology system

SPIE OPTO Pub Date : 2016-03-16 DOI:10.1117/12.2212010
Ya-Ling Chang, Kuan-Yu Hsu, Chih-Kung Lee
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Abstract

Advancement of distributed piezo-electret sensors and actuators facilitates various smart systems development, which include paper speakers, opto-piezo/electret bio-chips, etc. The array-based loudspeaker system possess several advantages over conventional coil speakers, such as light-weightness, flexibility, low power consumption, directivity, etc. With the understanding that the performance of the large-area piezo-electret loudspeakers or even the microfluidic biochip transport behavior could be tailored by changing their dynamic behaviors, a full-field real-time high-resolution non-contact metrology system was developed. In this paper, influence of the resonance modes and the transient vibrations of an arraybased loudspeaker system on the acoustic effect were measured by using a real-time projection moiré metrology system and microphones. To make the paper speaker even more versatile, we combine the photosensitive material TiOPc into the original electret loudspeaker. The vibration of this newly developed opto-electret loudspeaker could be manipulated by illuminating different light-intensity patterns. Trying to facilitate the tailoring process of the opto-electret loudspeaker, projection moiré was adopted to measure its vibration. By recording the projected fringes which are modulated by the contours of the testing sample, the phase unwrapping algorithm can give us a continuous phase distribution which is proportional to the object height variations. With the aid of the projection moiré metrology system, the vibrations associated with each distinctive light pattern could be characterized. Therefore, we expect that the overall acoustic performance could be improved by finding the suitable illuminating patterns. In this manuscript, the system performance of the projection moiré and the optoelectret paper speakers were cross-examined and verified by the experimental results obtained.
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利用实时投影莫尔测量系统表征基于光驻极体的纸质扬声器
分布式压电驻极体传感器和执行器的进步促进了各种智能系统的发展,包括纸扬声器,光电压电/驻极体生物芯片等。与传统线圈扬声器相比,阵列扬声器系统具有轻量化、灵活性、低功耗、指向性等优点。基于对大面积压电驻极体扬声器甚至微流控生物芯片传输行为可通过改变其动态行为来定制的认识,开发了一种全场实时高分辨率非接触计量系统。本文采用实时投影式声频测量系统和传声器,测量了阵列式扬声器系统的共振模态和瞬态振动对声效的影响。为了使纸质扬声器更加通用,我们将光敏材料TiOPc结合到原始驻极体扬声器中。这种新开发的光驻极体扬声器的振动可以通过照亮不同的光强度模式来控制。为了方便对光驻极体扬声器的定制,采用投影莫尔仪对其振动进行测量。相位解包裹算法通过记录被测样轮廓调制的投影条纹,得到与目标高度变化成正比的连续相位分布。借助投影莫尔测量系统,可以表征与每种不同光模式相关的振动。因此,我们期望通过寻找合适的照明模式来改善整体声学性能。本文对光驻极体纸扬声器和光驻极体投影扬声器的系统性能进行了交叉检验,并通过实验结果进行了验证。
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