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Echo Separation in Multidimensional Waveform Encoding SAR Remote Sensing Using an Advanced Null-Steering Beamformer

机译:使用高级零方向波束形成器的多维波形编码SAR遥感中的回波分离

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摘要

In order to reap the potential benefits that waveform diversity can provide for spaceborne synthetic aperture radar remote sensing, echoes from different subpulses constituting a complete transmit waveform should be effectively separated at first. This paper presents a new separation approach implemented by an advanced null-steering beamformer on satellite. Compared with common null-steering beamforming, our approach will take into account the characteristics of echo signal from the scene and accordingly embed the finite-impulse response (FIR) filtering process into the modified null-steering beamformer to deal with the issue of pulse extension. In this paper, echo signals generated by multidimensional encoded waveform will be analyzed in detail; based on this analysis, FIR filter and the new null-steering beamformer are derived. Simulation results show that much better separation performance can be obtained by our approach than by conventional null-steering beamforming.
机译:为了获得波形分集可以为星载合成孔径雷达遥感提供的潜在好处,首先应有效地分离来自构成完整发射波形的不同子脉冲的回波。本文提出了一种由先进的空导波束形成器在卫星上实现的新分离方法。与普通的零方向波束形成相比,我们的方法将考虑场景回声信号的特征,并将有限脉冲响应(FIR)滤波过程嵌入到改进​​的零方向波束形成器中,以处理脉冲扩展问题。 。本文将详细分析多维编码波形产生的回波信号。基于此分析,得出了FIR滤波器和新的空导波束形成器。仿真结果表明,与传统的空转向波束形成相比,我们的方法可以获得更好的分离性能。

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