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首页> 外文期刊>Russian Journal of Nondestructive Testing >Determination of the Reflector Type from an Image Reconstructed Using Echo Signals Measured with Ultrasonic Antenna Arrays
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Determination of the Reflector Type from an Image Reconstructed Using Echo Signals Measured with Ultrasonic Antenna Arrays

机译:从使用超声天线阵列测量的回波信号重建的图像中确定反射镜类型

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摘要

The application of the digital image focusing (DFA) method to the determination of the types of detected reflectors is considered. For this purpose two antenna arrays (AAs) are used, which are placed on opposite sides of the reflector and using which echo signals are recorded in three acoustic channels in the double-scanning mode. The first and second acoustic channels transmit and receive echo signals using the first and second AA, respectively, and the third channel is tuned so that the first AA transmits pulses and the second AA receives echo signals. Using signals in each channel, many partial images can be reconstructed in a common coordinate system according to different acoustic schemes with allowance for both multiple reflections from irregular boundaries of a tested object and effects of transformation of the wave types. Combining partial images makes it possible to obtain a high-quality image, in which the entire boundary of the reflector is seen and using which an attempt to automate the procedure of evaluating the reflector size and determining its type was made. Such an approach allows one to reduce the subjective influence of an operator on the testing results. It is shown that in order to increase the image resolution, the spectrum of echo signals can be extrapolated by the spectrum splitting method jointly with the construction of an AR model of their spectrum. The results of model experiments that confirm the possibility of determining the reflector type are presented.
机译:考虑了将数字图像聚焦(DFA)方法应用于确定检测到的反射器类型的应用。为此,使用两个天线阵列(AA),将其放置在反射器的相对侧,并使用它们以双扫描模式将回波信号记录在三个声波通道中。第一和第二声学通道分别使用第一和第二AA发送和接收回波信号,并调谐第三通道,以便第一AA发送脉冲,第二AA接收回波信号。使用每个通道中的信号,可以根据不同的声学方案在一个公共坐标系中重建许多局部图像,同时考虑到来自被测对象不规则边界的多次反射以及波类型转换的影响。组合部分图像可以得到高质量的图像,在该图像中可以看到反射镜的整个边界,并使用该图像尝试自动执行评估反射镜尺寸和确定其类型的过程。这种方法允许减少操作员对测试结果的主观影响。结果表明,为了提高图像分辨率,回波信号的频谱可以通过频谱分裂方法结合其频谱的AR模型的构造进行推断。给出了确定确定反射器类型可能性的模型实验结果。

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