单脉冲成像(SPI)的实验验证

David G. Felton, Christian C. Jones, D. B. Herr, Lumumba A. Harnett, S. Blunt, Chris Allen
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引用次数: 0

摘要

单脉冲成像(SPI)算法通过加入快时多普勒来推广自适应脉冲压缩(APC),从而增强了距离和多普勒散射体的可分离性。在这里,我们通过引入动态波束破坏来改进这种基于模型的方法,以提供额外的鲁棒性。然后使用中心频率为47.5 kHz的超声波试验台显示该SPI鲁棒实例的露天实验结果,这类似于射频中心频率为41.25 GHz。声音的低传播速度和相关波长允许有意义的高速仿真,从而引入射频操作的快时间多普勒效应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental Demonstration of Single Pulse Imaging (SPI)
The single pulse imaging (SPI) algorithm was developed as a means to generalize adaptive pulse compression (APC) by incorporating fast-time Doppler, thereby enhancing separability of scatterers in both range and Doppler. Here, we modify this model-based method by introducing dynamic beamspoiling to provide additional robustness. Open-air experimental results for this robust instantiation of SPI are then shown using an ultrasonic testbed at a center frequency of 47.5 kHz, which is analogous to an RF center frequency of 41.25 GHz. The low propagation velocity and associated wavelength of sound permits meaningful emulation of the high speeds that introduce fast-time Doppler effects for RF operation.
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