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Frequency Dispersion Compensation Through Variable Window Utilization in Time-Reversal Techniques for Electromagnetic Waves

机译:电磁波的时间反转技术中通过可变窗口利用进行频率色散补偿

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摘要

In microwave imaging applications, propagating signals undergo additional attenuation in dispersive and lossy media compared to the nondispersive and lossless media. In this communication, we introduce a threshold approach and short-time Fourier transform (STFT)-based inverse filters to compensate for such additional attenuation in time-reversal (TR)-based imaging algorithms. The method introduced here is utilized to reduce the unwanted noise amplification in the received signals during the compensation stage. Additionally, optimum settings for window type and length in the STFT method are obtained through a scanning operation in the propagation medium. Different window types and lengths are studied to achieve the best focusing resolution in TR applications. While utilizing a large number of windows with short spatial lengths provides an improved TR focusing performance, it also increases the overall cost and complexity of the imaging system. The threshold method introduced here achieves improved TR focusing performance without increasing the cost by utilizing a lower number of inverse filters.
机译:在微波成像应用中,与非分散和无损介质相比,传播信号在分散和有损介质中会经历额外的衰减。在此通信中,我们介绍了一种阈值方法和基于短时傅立叶变换(STFT)的逆滤波器,以补偿基于时间反转(TR)的成像算法中的此类额外衰减。此处介绍的方法用于减少补偿阶段在接收信号中产生的不必要的噪声放大。另外,通过在传播介质中进行扫描操作,可以获得STFT方法中窗口类型和长度的最佳设置。研究了不同的窗口类型和长度,以在TR应用中获得最佳聚焦分辨率。虽然利用具有短空间长度的大量窗口提供了改进的TR聚焦性能,但它也增加了成像系统的总体成本和复杂性。此处介绍的阈值方法通过使用较少数量的逆滤波器,可以在不增加成本的情况下提高TR聚焦性能。

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