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Rapid ultrasonic array assessment framework method for evaluating ultrasonic array transducer performance

机译:快速超声阵列评估超声阵列换能器性能的评估框架方法

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Ultrasonic array modelling is widely used to understand the performance of new transducer materials or geometries in a range of application scenarios. However, array modelling from first principles is both time-consuming and challenging due to the required knowledge of accurate acoustic and piezoelectric properties. This paper presents an alternative approach in which two elements are manufactured and characterised in the desired application scenario through a set of experimentally measured parameters. This experimental information is then used to construct a frequency domain model of an array of these elements. In this approach, the more challenging transducer modelling aspects are replaced by an experiment, and wave propagation modelling is used to simulate how those elements would perform in an array assembly. In order to characterise the elements and the application scenario the input pulse, attenuation coefficient, and both coherent and random noise amplitudes are measured. These experimental parameters are then used in a model to simulate the expected array image, from which the array performance, such as the signal-to-noise ratio, coherent noise scattering level, random noise level, and imaging artefacts, in the given application can be quantified. The approach is demonstrated with two commercial ultrasonic arrays and three test structure materials with differing levels of coherent grain scattered noise. Results across these various conditions show agreement within 4.2 dB between the simulations and their experimental counterparts in terms of image signal-to-noise ratio. Simulations with defects are also conducted and compared with experimental data for different array element geometries. (C) 2021 Elsevier Ltd. All rights reserved.
机译:超声波阵列建模广泛用于了解新型传感器材料或几何形式的一系列应用场景的性能。然而,由于准确的声学和压电性能所需的知识,从第一个原理中的阵列建模既耗时和挑战。本文介绍了一种替代方法,其中通过一组实验测量的参数制造并在所需的应用场景中制造和特征。然后使用该实验信息来构造这些元素阵列的频域模型。在这种方法中,更具挑战性的传感器建模方面是由实验取代的,并且使用波传播建模来模拟这些元件在阵列组件中的执行方式。为了表征元素和应用场景,测量输入脉冲,衰减系数和两个相干和随机噪声幅度。然后将这些实验参数用于模型以模拟给定应用程序中的阵列性能,例如信噪比,相干噪声散射水平,随机噪声水平和成像人工的模型中的模型量化。该方法用两种商业超声阵列和三个测试结构材料进行了说明,具有不同水平的相干颗粒散射噪声。在这些各种条件下,在图像信噪比方面,这些各种条件显示在模拟与实验对应之间的4.2 dB内。还与不同阵列元素几何形状的实验数据进行了缺陷的模拟。 (c)2021 elestvier有限公司保留所有权利。

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