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Optoacoustic methods for frequency calibration of ultrasonic sensors

机译:超声传感器频率校准的光声方法

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摘要

The frequency response of ultrasonic detectors is commonly calibrated by finding their sensitivity to incident plane waves at discrete frequencies. For certain applications, such as the emerging field of optoacoustic tomography, it is the response to point sources emitting broadband spectra that needs to be found instead. Although these two distinct sensitivity characteristics are interchangeable in the case of a flat detector and a point source at infinity, it is not the case for detectors with size considerably larger than the acoustic wavelength of interest or those having a focused aperture. Such geometries, which are common in optoacoustics, require direct calibration of the acoustic detector using a point source placed in the relevant position. In this paper, we report on novel cross-validating optoacoustic methods for measuring the frequency response of wideband acoustic sensors. The approach developed does not require pre-calibrated hydrophones and therefore can be readily adopted in any existing optoacoustic measurement configuration. The methods are successfully confirmed experimentally by measuring the frequency response of a common piezoelectric detector having a cylindrically focused shape.
机译:通常通过发现超声波检测器对离散频率入射平面波的灵敏度来校准其频率响应。对于某些应用,例如新兴的光声层析成像领域,需要找到对发射宽带光谱的点源的响应。尽管在平板探测器和无穷远点光源的情况下,这两个不同的灵敏度特性是可以互换的,但对于尺寸远大于目标声波波长或具有聚焦孔径的探测器而言,情况并非如此。这种在光声中很常见的几何形状需要使用放置在相关位置的点源直接校准声检测器。在本文中,我们报告了用于测量宽带声学传感器频率响应的新型交叉验证光声方法。开发的方法不需要预先校准的水听器,因此可以很容易地在任何现有的光声测量配置中采用。通过测量具有圆柱形聚焦形状的普通压电检测器的频率响应,通过实验成功地证实了这些方法。

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