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首页> 外文期刊>IEEE Transactions on Aerospace and Electronic Systems >Frequency-Domain Range Sidelobe Correction in Stretch Processing for Wideband LFM Radars
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Frequency-Domain Range Sidelobe Correction in Stretch Processing for Wideband LFM Radars

机译:宽带LFM雷达拉伸处理中的频域范围旁瓣校正

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摘要

High linearity and low noise are important conditions for high-resolution imaging in wideband linear frequency modulation (LFM) radar systems, where stretch processing is commonly adopted. However, in practice, hardware may introduce amplitude and phase distortions to radar signals. The distortions will increase the range sidelobes (RSLs) of the dechirped returns and cause the decline of imaging quality. Traditional time-domain RSL correction methods are greatly influenced by time delay and can only be used in a small range window. To solve the problem, we propose a novel frequency-domain RSL correction (FDRC) method in this paper. For FDRC, we first multiply the extracted distortion and the stretched return by a baseband LFM signal and then perform the correction in the frequency domain. Both theoretical and simulation results show that the proposed method provides equivalent performances in RSLs compared to other existing distortion correction methods in a large range window. Besides, the proposed method can be much easily implemented in practical radar systems.
机译:高线性度和低噪声是宽带线性调频(LFM)雷达系统中高分辨率成像的重要条件,在该系统中通常采用拉伸处理。但是,实际上,硬件可能会将幅度和相位失真引入雷达信号。失真会增加退回后的回波的旁瓣(RSL),并导致成像质量下降。传统的时域RSL校正方法受时间延迟的影响很大,只能在较小的范围窗口中使用。为了解决该问题,本文提出了一种新颖的频域RSL校正(FDRC)方法。对于FDRC,我们首先将提取的失真和扩展的回波乘以基带LFM信号,然后在频域中执行校正。理论和仿真结果均表明,与其他现有的大范围窗口中的失真校正方法相比,该方法在RSL中提供了等效的性能。此外,所提出的方法可以很容易地在实际雷达系统中实施。

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