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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Air-coupled through-transmission fan-beam tomography using divergent capacitive ultrasonic transducers
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Air-coupled through-transmission fan-beam tomography using divergent capacitive ultrasonic transducers

机译:使用发散电容超声换能器的空气耦合直通传输扇形束层析成像

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摘要

A pair of divergent air-coupled capacitive ultrasonic transducers (CUTs) with curved backplates was used to acquire signals through regions of air containing solid objects, air flow, and temperature fields. Fan-beam datasets were collected and used in a tomographic reconstruction algorithm to produce cross-sectional images of the area under interrogation. In the case of the solid objects, occluded rays from the projections were accounted for using a compensation algorithm and a priori knowledge of the object. A rebinning routine was used to pick out parallel ray sets from the fan-beam data. The effects of further reducing the number of datasets also were investigated, and, in the case of imaging solid objects, characteristic Gibbs phenomena were seen in the reconstructions as expected. However, when imaging temperature and flow fields, the aliasing artefacts were not seen, but the reconstructed values decreased with the size of dataset used. The effect of changing the kernel filter function also was investigated, with the different filters giving the best compromise between image noise, reconstruction accuracy, and amount of data required in each scenario.
机译:一对带有弯曲背板的发散空气耦合电容超声换能器(CUT)用于通过包含固体物体,空气流和温度场的空气区域采集信号。收集了扇形光束数据集,并将其用于断层扫描重建算法中,以生成受讯问区域的横截面图像。在固体物体的情况下,使用补偿算法和物体的先验知识来解释来自投影的被遮挡的光线。使用重新组合例程从扇形束数据中挑选出平行射线集。还研究了进一步减少数据集数量的效果,并且在对固体对象成像的情况下,可以预期地在重建过程中看到特征性的吉布斯现象。但是,在对温度和流场成像时,看不到混叠伪影,但是重建值随所用数据集的大小而减小。还研究了更改内核滤波器功能的效果,在每种情况下,不同的滤波器可以在图像噪声,重构精度和所需数据量之间取得最佳折衷。

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