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A Closed Time-Reversal Cavity for Electromagnetic Waves in Transmission Line Networks

机译:用于传输线路网络中的电磁波的闭合时间逆转腔

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A closed time-reversal (TR) cavity has been considered a purely theoretical concept whose experimental realization was assumed to be impossible. In this article, we demonstrate that it is, in fact, possible to realize a closed TR cavity using a network of transmission lines. The network is excited by either lumped voltage or current sources at arbitrary locations, and it is terminated on matched impedances. This system is an exact closed TR cavity in the sense that, in the backward-propagation stage, by back-injecting time-reversed measured responses (voltage or current) generated by a source at each line terminal, a time-reversed copy of the current and voltage distribution in the forward-propagation stage is obtained. We report for the first time an experimental realization of a TR cavity formed by a network of inhomogeneous transmission lines, in which the spatial and temporal signal distribution along the network is reproduced as in a sequence of the system state (i.e., voltages and or current along the lines) being played in reverse. We also discuss the interfering effect of the so-called diverging wave for observation points in the vicinity of the source. An active realization of a TR sink is proposed to effectively overcome the interfering effect caused by the diverging waves.
机译:关闭的时间逆转(TR)腔被认为是一种纯粹的理论概念,其实验实现被认为是不可能的。在本文中,我们证明它实际上可以使用传输线路实现闭合TR腔。网络在任意位置处的集总电压或电流源激发,并且它在匹配的阻抗上终止。该系统是一个精确的闭合TR腔,在后向 - 传播阶段,通过在每个线终端处的源产生的时间反转测量的响应(电压或电流),这是一个在后向传播阶段,通过在每个线终端处产生的源极,时间反转副本获得正向传播级中的电流和电压分布。我们首次报告由不均匀传输线网络形成的TR腔的实验性实现,其中沿网络的空间和时间信号分布如在系统状态的序列中(即电压和或电流)再现沿着线条)反向播放。我们还讨论了所谓的发散波在源附近的观察点的干扰效果。提出了TR水槽的积极实现,以有效地克服由发散波引起的干扰效果。

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