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Extending the receive performance of phased ultrasonic transducer arrays in air down to 40 kHz and below

机译:在空气中延伸分阶段超声换能器阵列的接收性能下降至40 kHz和以下

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We present a versatile ultrasonic one-dimensional (1D) air-coupled phased array transducer with a focus on its receive performance. In addition to its beam steering capability in transmit mode, it can be used to listen to ultrasonic waves at 40 kHz and below. We fulfill the half-wavelength criteria for the element spacing by introducing an additional layer, consisting of many tapered sound tubes (waveguides). These sound tubes separate the effective acoustic aperture from the actual receiving aperture of several ultrasonic transducers. This ensures that the array is not affected by grating lobes over a wide range of steering angles, and, thus, the array is capable of receiving directed ultrasound with only one primary receive direction for an adjustable angle (receive-beam forming). Based on this approach, we built and characterized a proof-of-concept prototype device. Our results prove that the array is able to receive ultrasonic waves over a wide range of 110° in total, with a receive sensitivity of -55.9 dB (0 dB equal 1 V/Pa). Thus, the device has huge potential for new sensory applications and the approach is compatible with micromachined ultrasonic transducers as well.
机译:我们提出了一种多功能超声一维(1D)空气耦合相控阵换电器,重点是其接收性能。除了在发射模式下的光束转向能力之外,它还可以用于在40 kHz和下方收听超声波。我们通过引入附加层来满足元素间距的半波长标准,包括许多锥形声管(波导)。这些声管将有效声孔与几个超声换能器的实际接收孔分开。这确保了阵列不受在宽范围的转向的栅瓣角,并因此,阵列是能够接收导向超声仅与一个主接收方向可调节角度的(接收波束成形)。基于这种方法,我们构建并表征了概念验证原型设备。我们的结果证明,该阵列能够在宽范围110°的宽度接收超声波,接收灵敏度为-55.9 dB(0 dB等于1 V / PA)。因此,该装置对新的感官应用具有巨大的潜力,并且该方法也与微加工超声换能器兼容。

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