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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Ultrasonic beam steering through inhomogeneous layers with a time reversal mirror
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Ultrasonic beam steering through inhomogeneous layers with a time reversal mirror

机译:带有时间反转镜的超声波束穿过不均匀层

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Adaptive time delay focusing techniques allow an efficient correction of the effects due to an inhomogeneous layer close to the transducer array. If the layer is far from the array, these techniques are no longer appropriate to correct the diffraction effects between the layer and the transducer array. This problem was overcome by the use of acoustic time reversal mirrors. In this technique, the Green's function of a dominant scatterer available in the medium is recorded in digital memories and used to focus on the scatterer in both transmit and receive modes. We present in this paper an extension of this technique to focus, in the presence of an aberrating layer, not only on the dominant scatterer, but also around it in order to image the surrounding zone. From the knowledge of the Green's function needed to focus on the initial scatterer, we calculate the new Green's function matched to the new point of interest. The algorithm uses the concept of time reversal propagation, and we shall present here theoretical and experimental results obtained with this technique. Finally, the knowledge of each Green's function matched to each new desired focal point allows the realization of a B-scan image of the zone surrounding the reflector.
机译:自适应时间延迟聚焦技术允许有效校正由于靠近换能器阵列的不均匀层而引起的影响。如果该层远离阵列,则这些技术不再适用于校正该层与换能器阵列之间的衍射效应。通过使用声学时间倒转镜克服了这个问题。在这种技术中,介质中可用的主要散射体的格林函数被记录在数字存储器中,并用于在发射和接收模式下集中于散射体。我们在本文中介绍了该技术的扩展,以在存在像差层的情况下不仅聚焦在主要散射体上,还聚焦在散射体周围,以便对周围区域成像。根据对格林关注于初始散射体的功能的了解,我们计算出与新兴趣点匹配的新格林函数。该算法使用时间反转传播的概念,在此我们将介绍使用该技术获得的理论和实验结果。最后,对与每个新的所需焦点匹配的每个格林函数的知识允许实现反射器周围区域的B扫描图像。

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