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A reciprocity-based method to determine hydrophone complex sensitivity and tested at frequencies from 1 to 7 MHz

机译:一种基于互惠性的方法来确定水听器的复数灵敏度,并在1至7 MHz的频率上进行了测试

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Ultrasound hydrophone calibration comprises its sensitivity determination. Among different methods, the self-reciprocity one is absolute, traditional, long-time validated and standardized by International Electrotechnical Commission for calibration of hydrophone sensitivity magnitude. Self-reciprocity is the basis for the method in the present work, which uses an auxiliary transducer and a flat reflector immersed in a water tank and allows calculating the on-axis pressure waveform, given the excitation signal and the propagation medium properties. The pressure waveform at the hydrophone is calculated and used with the output-voltage waveform to determine its complex sensitivity. The method was tested at discrete frequencies from 1.0 to 7.0 MHz using two similar PVDF membrane hydrophones, previously calibrated in magnitude by NPL. The results are metrological acceptable, with inter-laboratorial agreement within the declared uncertainties in magnitude sensitivity (less than 11%) and intra-laboratorial agreement in sensitivity phase calibration, with uncertainty of less than 17 degrees.
机译:超声波水听器校准包括其灵敏度确定。在不同的方法中,自交互性是绝对的,传统的,经过国际电工委员会长期验证和标准化的,用于水听器灵敏度幅度的校准。自交互是当前工作方法的基础,该方法使用浸入水箱中的辅助换能器和平面反射器,并在给定激励信号和传播介质特性的情况下,可以计算轴向压力波形。计算水听器处的压力波形,并将其与输出电压波形一起使用以确定其复灵敏度。使用两个类似的PVDF薄膜水听器在1.0至7.0 MHz的离散频率上对该方法进行了测试,之前已通过NPL对其幅度进行了校准。结果在计量学上是可以接受的,在幅度灵敏度声明的不确定性范围内(小于11%)在实验室之间达成一致,在灵敏度相位校准中在实验室内部达成一致,不确定性小于17度。

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