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Ultra wide band synthetic aperture radar real time processing with a subaperture nonlinear chirp scaling algorithm

机译:子孔径非线性chi缩放算法的超宽带合成孔径雷达实时处理

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The low frequency ultra wide band (UWB) synthetic aperture radar (SAR) is famous for its wide integration angle, which lead to a large memory capacity requirement to several gigabytes. In this paper, the base parameters of the airborne UWB SAR real time processor are analyzed. Then a modified sub-aperture and sub-band nonlinear chirp scaling (NCS) algorithm is used to divide the SAR signal processing into pipelined parallel steps. To improve the image quality, motion compensation (MoCo) and radio frequency interference (RFI) suppression are introduced in real time processing. Using a distributed-memory structure, the design and implementation based on digital signal processors (DSPs) are proposed finally. The results of the flight experiment on a “Y12” airplane show that the demanded image quality can be obtained by using real time processing.
机译:低频超宽带(UWB)合成孔径雷达(SAR)以其宽的集成角而闻名,这导致对数GB的大存储容量需求。本文分析了机载UWB SAR实时处理器的基本参数。然后,使用改进的子孔径和子带非线性线性调频缩放(NCS)算法将SAR信号处理分为流水线并行步骤。为了提高图像质量,在实时处理中引入了运动补偿(MoCo)和射频干扰(RFI)抑制。最后,采用分布式内存结构,提出了基于数字信号处理器(DSP)的设计与实现。在“ Y12”飞机上进行的飞行实验结果表明,可以通过使用实时处理来获得所需的图像质量。

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