首页> 外文会议>Asian-Pacific conference on synthetic aperture radar;APSAR 2009 >Apply Super-SVA to Stepped-Frequency Chirp Signal Processing Based on Dechirp Method
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Apply Super-SVA to Stepped-Frequency Chirp Signal Processing Based on Dechirp Method

机译:Super-SVA在基于Dechirp方法的步进频率线性调频信号处理中的应用

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Stepped-frequency chirp signal (SFCS) is an important signal form used for high-resolution radar.It contains several sub-chirp signals with stepped carrier frequency and can be synthesized to a wideband chirp signal.Dechip method is a quick,effective method to process SFCS,it synthesizes the sub-pulses of SFCS in time-domain. The usual design rule of SFCS is the frequency step (A/) must be less than the bandwidth of sub-chirp (Bm).If △f> Bm,the synthesized signal will have gaps,which leading to grating lobes in radar image.Here we proposed an algorithm by using Super-SVA to extrapolate each subpulse so as to fill the gaps and depress grating lobes.Without the restriction of △f< Bm ,it will be very helpful for using less sub-chirps to obtain higher resolution and reducing the influence of target motion on the quality of synthesized signal.We presented simulations to verify the proposed algorithm.Furthermore the results imply that superSVA can not only be used for frequency-domain extrapolation,but also time-domain extrapolation of chirp signal.
机译:步进频率线性调频信号(SFCS)是用于高分辨率雷达的重要信号形式,它包含多个具有步进载波频率的子线性调频信号,可以合成为宽带线性调频信号.Dechip方法是一种快速有效的方法处理SFCS,它在时域中合成SFCS的子脉冲。 SFCS的通常设计规则是频率步长(A /)必须小于子线性调频脉冲(Bm)的带宽。如果△f> Bm,则合成信号将具有间隙,从而导致雷达图像中出现光栅波瓣。这里我们提出了一种利用Super-SVA外推每个子脉冲以填充间隙并抑制光栅波瓣的算法。在没有Δf

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