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Power-efficient RMA SAR imaging using pipelined Non-uniform Fast Fourier Transform

机译:使用流水线非均匀快速傅立叶变换的高效RMA SAR成像

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Range Migration Algorithm (RMA) is one of the most practiced frequency domain based algorithms for Synthetic Aperture Radar (SAR) image reconstruction. While computationally more intensive than Polar Format Algorithm (PFA), it has superior image reconstruction for large squint angles. Due to the real-time nature of SAR imaging-related tasks, it is desired to have faster hardware implementations of reconstruction algorithms. In this paper we study FPGA-based implementation of the RMA algorithm using a novel pipelined Non-uniform FFT (NuFFT) module that optimizes its operation by exploiting the order in which samples are presented. We demonstrate that we can achieve processing speed of over 600 Msps (Mega Samples per Second) for the implemented RMA algorithm using the FPGA.
机译:距离偏移算法(RMA)是用于合成孔径雷达(SAR)图像重建的最实践的基于频域的算法之一。尽管在计算上比极坐标格式算法(PFA)更为密集,但对于大斜视角度,它具有出色的图像重建功能。由于与SAR成像相关的任务具有实时性,因此希望具有更快的重构算法硬件实现。在本文中,我们使用新颖的流水线非均匀FFT(NuFFT)模块研究RMA算法的基于FPGA的实现,该模块通过利用采样顺序来优化其操作。我们证明,使用FPGA实施的RMA算法可以达到600 Msps(兆样本每秒)以上的处理速度。

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