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Wideband material detection for spoof resistance in GHz ultrasonic fingerprint sensing

机译:GHz超声波指纹感应中用于抗欺骗性的宽带材料检测

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One of the primary motivations for using ultrasound reflectometry for fingerprint imaging is the promise of increased spoof resistance over conventional optical or capacitive sensing approaches due to the ability for ultrasound to determine the elastic impedance of the imaged material. A fake 3D printed plastic finger can therefore be easily distinguished from a real finger. However, ultrasonic sensors are still vulnerable to materials that are similar in impedance to tissue, such as water or rubber. Previously we demonstrated an ultrasonic fingerprint reader operating with 1.3GHz ultrasound based on pulse echo impedance imaging on the backside silicon interface. In this work, we utilize the large bandwidth of these sensors to differentiate between a finger and materials with similar impedances using the frequency response of elastic impedance obtained by transducer excitation with a wideband RF chirp signal. The reflected signal is a strong function of impedance mismatch and absorption [Hoople 2015].
机译:使用超声反射计进行指纹成像的主要动机之一是,由于超声具有确定成像材料的弹性阻抗的能力,因此有望比传统的光学或电容感测方法提高抗欺骗性。因此,可以轻松地将假3D打印的塑料手指与真正的手指区分开。但是,超声波传感器仍然容易受到与组织阻抗相似的材料(例如水或橡胶)的伤害。先前,我们演示了基于背面硅接口上脉冲回波阻抗成像的1.3GHz超声波指纹识别器。在这项工作中,我们利用通过宽带射频线性调频信号激励换能器获得的弹性阻抗的频率响应,利用这些传感器的大带宽来区分手指和具有相似阻抗的材料。反射信号是阻抗失配和吸收的重要函数[Hoople 2015]。

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