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A Novel Orthogonal Waveform Separation Scheme for Airborne MIMO-SAR Systems

机译:机载MIMO-SAR系统的一种正交波形分离方案

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摘要

In recent years, multi-input multi-output (MIMO) synthetic aperture radar (SAR) systems, which can promote the performance of 3D imaging, high-resolution wide-swath remote sensing, and multi-baseline interferometry, have received considerable attention. Several papers on MIMO-SAR have been published, but the research of such systems is seriously limited. This is mainly because the superposed echoes of the multiple transmitted orthogonal waveforms cannot be separated perfectly. The imperfect separation will introduce ambiguous energy and degrade SAR images dramatically. In this paper, a novel orthogonal waveform separation scheme based on echo-compression is proposed for airborne MIMO-SAR systems. Specifically, apart from the simultaneous transmissions, the transmitters are required to radiate several times alone in a synthetic aperture to sense their private inner-aperture channels. Since the channel responses at the neighboring azimuth positions are relevant, the energy of the solely radiated orthogonal waveforms in the superposed echoes will be concentrated. To this end, the echoes of the multiple transmitted orthogonal waveforms can be separated by cancelling the peaks. In addition, the cleaned echoes, along with original superposed one, can be used to reconstruct the unambiguous echoes. The proposed scheme is validated by simulations.
机译:近年来,多输入多输出(MIMO)合成孔径雷达(SAR)系统可以提高3D成像,高分辨率宽范围遥感和多基线干涉测量的性能,因此受到了广泛的关注。关于MIMO-SAR的几篇论文已经发表,但是这种系统的研究受到严重限制。这主要是因为不能完全分离多个传输的正交波形的叠加回波。不完美的分离会引入模糊的能量,并会严重降低SAR图像。针对机载MIMO-SAR系统,提出了一种基于回声压缩的正交波形分离方案。具体而言,除了同步传输之外,还要求发射机在合成孔径中单独辐射几次,以感测其私有的内孔通道。由于相邻方位角位置处的通道响应是相关的,因此叠加回波中仅辐射的正交波形的能量将被集中。为此,可以通过消除峰值来分离多个传输的正交波形的回波。此外,清洗后的回波以及原始的叠加回波可用于重构明确的回波。仿真结果验证了该方案的有效性。

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