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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Bowtie limited diffraction beams for low-sidelobe and large depth of field imaging
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Bowtie limited diffraction beams for low-sidelobe and large depth of field imaging

机译:Bowtie有限衍射光束用于低旁瓣和大景深成像

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Limited diffraction beams such as Bessel beams and X waves have a large depth of field and thus could have many applications. However, these beams have higher sidelobes as compared to conventional focused beams in their focal planes. In this paper, a new class of limited diffraction beams is developed. These beams are termed bowtie limited diffraction beams because they have bowtie shapes in a plane perpendicular to the beam axis. To obtain pulse-echo images of low sidelobes and a large depth of field, a bowtie limited diffraction beam is used in transmission and its 90/spl deg/ rotated response (around the beam axis) is used in reception. Unlike the summation-subtraction method developed previously, this method does not reduce image frame rate or dynamic range of signals and is not motion sensitive. The theory of the bowtie limited diffraction beams is developed. Computer simulation of the theoretical beams under practical conditions, such as finite aperture, finite bandwidth, and causal excitation, is performed with the Rayleigh-Sommerfeld diffraction formula. The simulated beams are very close to those predicted analytically over a large depth of field.
机译:有限的衍射光束(例如贝塞尔光束和X波)具有较大的景深,因此可能具有许多应用。但是,与传统的聚焦光束相比,这些光束的焦平面具有更高的旁瓣。本文提出了一种新型的有限衍射光束。这些光束被称为领结受限衍射光束,因为它们在垂直于光束轴的平面上具有领结形状。为了获得低旁瓣和大景深的脉冲回波图像,在发射中使用蝶形受限衍射光束,在接收中使用其90 / spl度/旋转响应(围绕光束轴)。与先前开发的求和减法不同,该方法不会降低图像帧速率或信号的动态范围,并且对运动不敏感。发展了蝶形有限衍射光束的理论。使用Rayleigh-Sommerfeld衍射公式对实际条件(例如有限孔径,有限带宽和因果激发)下的理论光束进行计算机模拟。模拟光束非常接近在大景深上进行分析预测的光束。

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