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Time gating based on sparse time domain signal reconstruction from limited frequency domain information

机译:基于有限频域信息的稀疏时域信号重构的时间门控

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摘要

Time gating is one of the most widespread techniques to suppress the effect of unwanted echoes on antenna measurements. It just requires the measurement of the antenna under test (AUT) for a carefully chosen bandwidth and frequency step size and the isolation of the direct AUT signal contribution from the echo contribution in time domain is quite intuitive. Although a frequency sweep is usually fast compared to the axes movement, it might become the speed limiting factor for large measurement bandwidths. Thus, time gating techniques that need a minimum bandwidth are beneficial. Therefore, a gating method is presented that reconstructs a time domain signal with high resolution from a minimum measurement bandwidth based on the assumption that the time domain signal is sparse, i.e. it mainly consists of samples with low amplitude and only few samples with high amplitude which are related to the peaks of the direct and the echo signal. The effectiveness of the proposed method is compared with the well known fast Fourier transform (FFT) and matrix pencil method (MPM) based techniques using echoic near-field antenna measurement data.
机译:时间门控是抑制不需要的回声对天线测量的影响的最广泛的技术之一。它仅需要针对精心选择的带宽和频率步长测量被测天线(AUT),并且在时域中将直接AUT信号贡献与回波贡献隔离开来是非常直观的。尽管频率扫描通常比轴运动快,但它可能成为大测量带宽的速度限制因素。因此,需要最小带宽的时间门控技术是有益的。因此,提出了一种选通方法,该方法基于时域信号稀疏的假设,从最小测量带宽重建高分辨率的时域信号,即它主要由低幅度的样本组成,而只有少数具有高幅度的样本,与直接和回波信号的峰值有关。该方法的有效性与使用回声近场天线测量数据的基于快速傅里叶变换(FFT)和基于矩阵笔方法(MPM)的技术进行了比较。

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