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Advances in measurements of ultrasound fields in the frequency range 20-60 MHz

机译:频率范围内超声场测量的研究进展20-60 MHz

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A powerful measurement technique suitable for virtually continuous calibration of ultrasonic hydrophone probes in the frequency range 250 kHz - 60 MHz is described and frequency responses of PVDF polymer hydrophones are presented. The validity of the calibration results was examined using independent calibration techniques. The values of sensitivity in V/Pa obtained using a linear swept frequency technique were compared with those which were determined from the measurements employing nonlinear wave propagation. Also, the sensitivity against frequency data obtained here were compared with the data provided by an independent national laboratory. The overall agreement between the calibration results obtained using different techniques mentioned above was within ±1 dB at the frequencies up to 25 MHz. The uncertainty increased gradually with increasing frequency and was determined to be ±2.5 dB at 60 MHz. Spatial averaging correction model is being developed to minimize this uncertainty. The near continuous frequency plots in the 40-60 MHz bandwidth were not reported so far and reveal that the ultrasonic hydrophone probes response is largely controlled by their design architecture.
机译:描述了一种强大的测量技术,适用于在频率范围250kHz -60MHz中的超声水听器探针的几乎连续校准,并提出了PVDF聚合物流水声的频率响应。使用独立的校准技术检查校准结果的有效性。将使用线性扫描频率技术获得的V / PA中的灵敏度值与从采用非线性波传播的测量确定的那些进行比较。此外,将在此获得的频率数据的灵敏度与由独立国家实验室提供的数据进行比较。使用上述不同技术获得的校准结果之间的总体协议在高达25MHz的频率下在±1 dB内。不确定性随着频率的增加而逐渐增加,并确定为60 MHz的±2.5 dB。正在开发空间平均校正模型以最大限度地减少这种不确定性。到目前为止没有报告40-60MHz带宽中的近连续频率地块,并揭示超声波水听器探测响应主要由其设计架构控制。

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