首页> 外文会议>International materials symposium;Meeting of SPM;MATERIAiS 2009 >Application of Inverse Methods for Spatial Deconvolution of Pulsed Ultrasound Fields Radiated in Solids
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Application of Inverse Methods for Spatial Deconvolution of Pulsed Ultrasound Fields Radiated in Solids

机译:逆方法在固体辐射脉冲超声场空间反褶积中的应用

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When measuring the ultrasound field, the signal provided by the receiving transducer is affected by its spatial properties. Particularly, the displacement normal to its surface is spatially averaged because of the receiver finite size. In this study, we show using a numerical simulation, the effectiveness of the spatial deconvolution of these effects for a rectangular transducer. For that, three methods allowing the inversion of the aperture effect are tested 1) Wiener's method; 2) the power spectral equalization (PSE) method, and 3) the maximum a posteriori (MAP) method. The obtained results show that the three methods are able to reconstruct the ultrasound field from the spatially averaged values and the quality of the reconstruction depends strongly upon the signal to noise ratio (SNR) and the spatial frequencies of the ultrasound field investigated
机译:在测量超声场时,接收换能器提供的信号会受到其空间特性的影响。特别地,由于接收器的有限尺寸,垂直于其表面的位移在空间上被平均。在这项研究中,我们使用数值模拟显示了矩形换能器这些效应的空间反褶积效果。为此,测试了三种可以反转孔径效果的方法:1)维纳方法; 2)功率谱均衡(PSE)方法,以及3)最大后验(MAP)方法。获得的结果表明,这三种方法能够从空间平均值重建超声场,并且重建的质量在很大程度上取决于信噪比(SNR)和所研究的超声场的空间频率

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