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Wideband Time Reversal of Microwave Signals Based on Phase Conjugating

机译:基于相位共轭的微波信号宽带时间反转

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A phase conjugating network to realize wideband time reversal of microwave signals is studied in this paper. After discussions on the operation principle of the reversed signal in the time and frequency domains, a prototype network based on phase-conjugating mixing is developed. A demonstrator is designed and fabricated, and two examinations are carried out to confirm the presented method. For a fixed LO signal, a chirp RF signal with 40-MHz bandwidth can be phase-conjugated mixing, thus time reversed effectively. To widen the operation bandwidth, a method named dynamically synchronous phase conjugating is proposed; this enables a microwave signal to be dynamically reversed by synchronously varying the LO frequency along with the RF frequency, thus achieving the phase-conjugating dynamically in a wide frequency band. The simulation and experiment results of a wideband microwave signal, ranging from 5.4 to 6.25 GHz under a measured conversion loss of ≤ 10 dB, verify our studies.
机译:本文研究了一种实现微波信号宽带时间反转的相位共轭网络。在讨论了时域和频域中反向信号的工作原理后,建立了基于相位共轭混合的原型网络。设计并制造了一个演示器,并进行了两次检查以确认所提出的方法。对于固定的LO信号,可以对40 MHz带宽的线性调频RF信号进行相位共轭混合,从而有效地反转时间。为了扩大运算带宽,提出了一种动态同步相位共轭的方法。通过同步改变LO频率和RF频率,可以使微波信号动态反向,从而在宽频带内实现动态共轭。在测得的转换损耗≤10 dB的情况下,宽带微波信号在5.4至6.25 GHz范围内的仿真和实验结果证实了我们的研究。

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