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首页> 外文期刊>Microwave Theory and Techniques, IEEE Transactions on >An Electronic Circuit System for Time-Reversal of Ultra-Wideband Short Impulses Based on Frequency-Domain Approach
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An Electronic Circuit System for Time-Reversal of Ultra-Wideband Short Impulses Based on Frequency-Domain Approach

机译:基于频域方法的超宽带短脉冲时间反转电子电路系统

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摘要

In this paper, a compact and low-cost electronic circuit system is designed for time-reversal of ultra-wideband short impulses (with nanosecond and sub-nanosecond temporal durations). A frequency-domain approach is adopted to avoid high sampling rate in time. Specifically, the proposed system obtains the discrete spectra of input impulses first; then realizes time-reversal in frequency domain; and finally synthesizes the time-reversed impulses using discrete continuous wave elements. This system is composed of common and commercially available circuits, and hence, can embody a system-on-chip implementation. Its performance is verified by circuit-electromagnetic co-simulations using impulses with 3–10-GHz frequency band coverage. Advanced Design System and two full-wave Maxwell''s equations solvers are used for circuit and electromagnetic simulations, respectively, and their results are coupled and integrated. In the circuit part, most of nonidealities of realistic circuits are taken into account. It is shown by the simulation results that, although realistic circuits unavoidably introduce errors to time-reversal, such errors do not affect the “focusing” phenomena in the context of electromagnetic wave propagation. As a conclusion, the proposed system can be deployed in practical time-reversal communication and radar applications.
机译:在本文中,设计了一种紧凑且低成本的电子电路系统,用于超宽带短脉冲(具有纳秒级和亚纳秒级的时间持续时间)的时间反转。采用频域方法以避免及时的高采样率。具体而言,所提出的系统首先获得输入脉冲的离散频谱。然后在频域中实现时间反转。最后使用离散的连续波元素合成时间反向脉冲。该系统由常见的和可商购的电路组成,因此可以体现为片上系统实现。使用具有3–10 GHz频带覆盖范围的脉冲的电路电磁协同仿真可以验证其性能。 Advanced Design System和两个全波Maxwell方程求解器分别用于电路和电磁仿真,其结果经过耦合和积分。在电路部分,考虑了实际电路的大多数非理想性。仿真结果表明,尽管现实的电路不可避免地会在时间反转中引入误差,但这种误差不会影响电磁波传播的“聚焦”现象。结论是,所提出的系统可以部署在实际的时间反向通信和雷达应用中。

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