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Ultrasound field measurement using a binary lens

机译:使用二元透镜进行超声场测量

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摘要

Field characterization methods using a scattering target in the absence of a point-like receiver have been well described, in which scattering is recorded by a relatively large receiver located outside the field of measurement. Unfortunately, such methods are prone to artifacts caused by averaging across the receiver surface. To avoid this problem while simultaneously increasing the gain of a received signal, the present study introduces a binary plate lens designed to focus sphericallyspreading waves onto a planar region having a nearly-uniform phase proportional to that of the target location. The lens is similar to a zone plate, but modified to produce a bi-convexlike behavior, such that it focuses both planar and spherically spreading waves. A measurement device suitable for characterizing narrowband ultrasound signals in air is designed around this lens by coupling it to a target and planar receiver. A prototype device is constructed and used to characterize the field of a highly-focused 400-kHz in-air transducer along 2 radial lines. Comparison of the measurements with numeric predictions formed from nonlinear acoustic simulation showed good relative pressure correlation, with mean differences of 10% and 12% over the center 3-dB full-width at half-maximum drop and 12% and 17% over the 6-dB drop.
机译:在没有点状接收器的情况下使用散射目标的场表征方法已得到很好的描述,其中散射是由位于测量场外的相对较大的接收器记录的。不幸的是,这样的方法容易由于在整个接收器表面上的平均而引起伪像。为了避免这个问题,同时增加接收信号的增益,本研究引入了一种双板透镜,该透镜设计用于将球面扩展的波聚焦到一个平面区域上,该区域的相位几乎与目标位置的相位成比例。该透镜类似于波带片,但经过修改可产生双凸状行为,因此可以聚焦平面波和球面波。通过将透镜耦合到目标和平面接收器,在透镜周围设计了一种适合表征空气中窄带超声信号特征的测量设备。构建了原型设备,并将其用于表征沿2条径向线的高度聚焦的400 kHz空中传感器的场。测量结果与由非线性声学模拟形成的数值预测结果的比较显示出良好的相对压力相关性,半中心最大降幅时,中心3 dB全宽的平均差分别为10%和12%,而6级的平均差为12%和17% -dB下降。

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