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Ultrasonic Single Element and Sectorized Array Transducers with Omnidirectional 2D Field Distribution for Non-Contact Human-Machine Interface and Echo-Location

机译:超声波单元素和扇形阵列换能器,具有非接触式人机界面和回声位置的全向2D现场分布

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摘要

This work discusses the possibilities of some novel applications for the high frequency (200 kHz-500 kHz), high sensitivity (-20 dB- -35 dB) and wide band (> 50 % @ -20 dB) air-coupled transducers that have been used so far for non-destructive testing and materials characterization at CSIC. These applications refer to non-contact human-machine interfaces, gesture recognition and echolocation. Compared with other technologies, the relatively higher frequency and bandwidth permit to achieve better resolution and the higher sensitivity permit to reach longer distances. In addition, this later feature also permits to reduce the number of transducers. This is achieved by using a conical reflector that provides an omnidirectional (2D) acoustic field. Examples of applications and realizations are shown by using single element 250 kHz transducers; and 8-elements 400 kHz sectorized array transducers. This later type of air-coupled array is introduced here for the first time.
机译:这项工作讨论了一些新颖应用的高频(200kHz-500 kHz),高灵敏度(-20dB--35 dB)和宽带(> 50%@ -20 dB)的空气耦合传感器的可能性 到目前为止用于CSIC的非破坏性测试和材料表征。 这些应用程序是指非联系人机器接口,手势识别和呼应。 与其他技术相比,相对较高的频率和带宽允许达到更好的分辨率和更高的灵敏度允许达到更长的距离。 此外,此后的功能还允许减少换能器的数量。 这是通过使用提供全向反射器(2D)声场的锥形反射器来实现的。 通过使用单个元件250 kHz换能器显示应用和实现的示例; 和8个元件400 kHz阵列传感器。 此后的这种类型的空气耦合阵列首次介绍。

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