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Ultrasonic fingerprint sensor in underglass prototype using impedance mismatching

机译:使用阻抗不匹配的灯泡原型的超声波指纹传感器

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摘要

Fingerprint imaging is a powerful tool in biometric identification systems. There are several methods for measuring fingerprints, such as optics, capacitive, and ultrasonic methods. The previous ultrasonic imaging techniques have been available in immersion systems which require the hands to be put into water. Also, pulse-echo system in dry condition has coupling layer which is similar acoustic impedance to human tissue or high impedance materials based on waveguide. For fingerprint imaging in the dry state, we propose an ultrasonic imaging technique in underglass by using the impedance mismatch between the fingertip and the solid plate. We present the image results according to the plate material such as acrylic, glass and PDMS. In addition, simulation results based on small 2-D array transducers in a near field suggest the feasibility of compact and fast fingerprint scanning system. Therefore, this work presents feasibility of ultrasonic pulse-echo fingerprint sensing method for dry hand.
机译:指纹成像是生物识别系统中的强大工具。有几种测量指纹的方法,例如光学,电容和超声波方法。以前的超声波成像技术已在浸入系统中提供,其要求手放入水中。此外,干燥条件中的脉冲回波系统具有耦合层,其是对人体组织或基于波导的高阻抗材料类似的声阻抗。对于在干燥状态下的指纹成像,我们通过使用指尖和固体板之间的阻抗失配提出了硫化物中的超声成像技术。我们根据板材如丙烯酸,玻璃和PDMS呈现图像结果。此外,基于近场小型2-D阵列换能器的仿真结果表明了紧凑型和快速指纹扫描系统的可行性。因此,这项工作呈现了干手的超声波脉冲回声指纹传感方法的可行性。

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