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RGB representation of two-dimensional multi-spectral acoustic data for object surface profile imaging

机译:用于物体表面轮廓成像的二维多光谱声数据的RGB表示

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摘要

Conventionally, acoustic imaging has been performed using a single frequency or a limited number of frequencies. However, the rich information on surface profiles, structures hidden under surfaces and material properties of objects may exhibit frequency dependence. In this study, acoustic imaging on object surface was conducted over a wide frequency range with a fine frequency step, and a method for displaying the acquired multi-spectral acoustic data was proposed. A complicated rigid surface with different profiles was illuminated by sound waves sweeping over the frequency range from 1 to 20 kHz with a 30 Hz step. The reflected sound was two-dimensionally recorded using a scanning microphone, and processed using a holographic reconstruction method. The two-dimensional distributions of obtained sound pressure at each frequency were defined as 'multi-spectral acoustic imaging data'. Next, the multi-spectral acoustic data were transformed into a single RGB-based picture for easy understanding of the surface characteristics. The acoustic frequencies were allocated to red, green and blue using the RGB filter technique. The depths of the grooves were identified by their colours in the RGB image.
机译:传统上,已经使用单个频率或有限数量的频率来执行声学成像。但是,有关表面轮廓,隐藏在表面下的结构以及对象的材料属性的丰富信息可能会表现出频率依赖性。在这项研究中,在宽频率范围内以精细的频率步长在目标表面上进行声成像,并提出了一种显示获取的多光谱声数据的方法。复杂的刚性表面具有不同的轮廓,可以通过以30 Hz的步进在1至20 kHz的频率范围内扫描的声波来照亮。反射的声音使用扫描麦克风进行二维记录,并使用全息重建方法进行处理。将在每个频率处获得的声压的二维分布定义为“多谱声成像数据”。接下来,将多光谱声数据转换为一张基于RGB的图片,以便于理解表面特性。使用RGB滤波器技术将声频分配给红色,绿色和蓝色。凹槽的深度由其在RGB图像中的颜色标识。

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