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首页> 外文期刊>Journal of neurosurgical sciences >Efficient Strip-Mode SAR Raw-Data Simulator of Extended Scenes Included Moving Targets Based on Reversion of Series
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Efficient Strip-Mode SAR Raw-Data Simulator of Extended Scenes Included Moving Targets Based on Reversion of Series

机译:延长场景的高效条形SAR原始数据模拟器包括基于恢复系列的移动目标

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摘要

The Synthetic Aperture Radar (SAR) raw data generator is required to the evaluation of focusing algorithms, moving target analysis, and hardware design. The time-domain SAR simulator can generate the accurate raw data but it needs much time. The frequency-domain simulator not only increases the efficiency but also considers the trajectory deviations of the radar. In addition, the raw signal of the extended scene included static and moving targets can be generated by some frequency-domain simulators. However, the existing simulators concentrate on the raw signal simulation of the static extended scene and moving targets at uniform speed mostly. As for the issue, the two-dimensional signal spectrum of moving targets with constant acceleration can be derived accurately based on the geometric model of a side-looking SAR and reversion of series. And a frequency-domain algorithm for SAR echo signal simulation is presented based on the two-dimensional signal spectrum. The raw data generated with proposed method is verified by several simulation experiments. In addition to reveal the efficiency of the presented frequency-domain SAR scene simulator, the computational complexity of the proposed method is compared with the time-domain approach using the complex multiplication. Numerical results demonstrate that the present method can reduce the computational time significantly without accuracy loss while simulating SAR raw data.
机译:合成孔径雷达(SAR)原始数据发生器需要评估聚焦算法,移动目标分析和硬件设计。时域SAR模拟器可以生成准确的原始数据,但它需要很多时间。频域模拟器不仅提高了效率,还考虑了雷达的轨迹偏差。另外,可以通过一些频域模拟器生成扩展场景的原始信号包括静态和移动目标。然而,现有的模拟器专注于静态扩展场景的原始信号模拟,主要是均匀速度移动目标。至于该问题,可以基于侧面看SAR的几何模型和串联的逆转,准确地导出具有恒定加速度的移动目标的二维信号谱。基于二维信号谱呈现SAR回波信号模拟的频域算法。通过若干模拟实验验证以所提出的方法生成的原始数据。除了揭示呈现的频域SAR场景模拟器的效率之外,将所提出的方法的计算复杂性与使用复数乘法的时域方法进行比较。数值结果表明,本方法可以在模拟SAR原始数据的同时显着降低计算时间,而无需精确丢失。

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