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Generalized Continuous Wave Synthetic Aperture Radar for High Resolution and Wide Swath Remote Sensing

机译:用于高分辨率和宽幅遥感的通用连续波合成孔径雷达

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A generalized continuous wave synthetic aperture radar (GCW-SAR) concept is proposed in this paper. By using full-duplex radio frontend and continuous wave signaling, the GCW-SAR system can overcome a number of limitations inherent within the existing SAR systems and achieve high-resolution and wide-swath remote sensing with low-power signal transmission. Unlike the conventional pulsed SAR and the frequency-modulated continuous-wave SAR, the GCW-SAR reconstructs a radar image by directly correlating the received 1-D raw data after self-interference cancellation with predetermined location-dependent reference signals. A fast imaging algorithm, called the piecewise constant Doppler (PCD) algorithm, is also proposed, which produces the radar image recursively in the azimuth direction without any intermediate step, such as range compression and migration compensation, as required by conventional algorithms. By removing the stop-and-go assumption or slow-time sampling in azimuth, the PCD algorithm not only achieves better imaging quality but also allows for more flexible waveform and system designs. Analyses and simulations show that the GCW-SAR tolerates significant self-interference and works well with a large selection of various system parameters. The work presented in this paper establishes a solid theoretical foundation for next-generation imaging radars.
机译:提出了广义连续波合成孔径雷达(GCW-SAR)的概念。通过使用全双工无线电前端和连续波信令,GCW-SAR系统可以克服现有SAR系统固有的许多限制,并以低功率信号传输实现高分辨率和广范围的遥感。与常规脉冲SAR和调频连续波SAR不同,GCW-SAR通过在自干扰消除后将接收到的一维原始数据与预定的位置相关参考信号直接相关,从而重建雷达图像。还提出了一种快速成像算法,称为分段常数多普勒(PCD)算法,该算法可沿方位角方向递归生成雷达图像,而无需任何常规步骤,例如距离压缩和偏移补偿。通过消除停走走走假设或方位角上的慢时间采样,PCD算法不仅可以实现更好的成像质量,还可以实现更灵活的波形和系统设计。分析和仿真表明,GCW-SAR可以承受很大的自干扰,并且在选择各种系统参数时效果很好。本文介绍的工作为下一代成像雷达奠定了坚实的理论基础。

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