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Post-processing of ultrasonic phased array data for optimal performance

机译:对超声相控阵数据进行后处理以获得最佳性能

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One of the most significant changes over recent years in many areas of NDE has been the move away from monolithic transducers and towards array devices. The existing processing for ultrasonic arrays typically uses the array to emulate a monolithic transducer. This is based on having independently controlled parallel transmission circuits that enable staggered firing of transmitter elements so that the physical wave front injected into a specimen can be translated, steered or focused. Similarly, received signals may be manipulated to perform related operations. This paper describes an alternative approach in which the complete raw data set is collected, containing the time domain signals from every transmitter-receiver pair. Linear post-processing of this data set enables a number of conventional test techniques to be used and compared. Simulated data has been produced for single-point reflectors and an array performance indicator has been used to characterise the point spread function for a number of standard test procedures. Experimental results are also presented and these show good quantitative agreement with the simulated data sets. In addition, an advanced processing algorithm has been implemented which allows the array to be focused at every point in the target in both transmission and reception. This method is proposed as a superior alternative to the conventional test techniques.
机译:近年来,在NDE的许多领域中,最重大的变化之一就是从单片换能器向阵列设备的转变。超声阵列的现有处理通常使用该阵列来模拟单片换能器。这是基于具有独立控制的并行传输电路的,该电路能够错开发射器元件,从而可以平移,操纵或聚焦注入样本的物理波前。类似地,可以操纵接收到的信号以执行相关的操作。本文介绍了一种替代方法,其中收集了完整的原始数据集,其中包含来自每个收发器对的时域信号。此数据集的线性后处理使得可以使用和比较许多常规测试技术。已为单点反射器生成了模拟数据,并且已使用阵列性能指标来表征许多标准测试程序的点扩展功能。还提出了实验结果,这些结果与模拟数据集显示出良好的定量一致性。另外,已经实现了先进的处理算法,该算法允许在发送和接收中将阵列聚焦在目标中的每个点上。提出该方法作为常规测试技术的替代方案。

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