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Azimuth-Variant Signal Processing in High-Altitude Platform Passive SAR with Spaceborne/Airborne Transmitter

机译:带机载/机载发射机的高空平台无源SAR中方位角-变角信号处理

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High-altitude platforms (HAP) or near-space vehicle offers several advantages over current low earth orbit (LEO) satellite and airplane, because HAP is not constrained by orbital mechanics and fuel consumption. These advantages provide potential for some specific remote sensing applications that require persistent monitoring or fast-revisiting frequency. This paper investigates the azimuth-variant signal processing in HAP-borne bistatic synthetic aperture radar (BiSAR) with spaceborne or airborne transmitter for high-resolution remote sensing. The system configuration, azimuth-variant Doppler characteristics and two-dimensional echo spectrum are analyzed. Conceptual system simulation results are also provided. Since the azimuth-variant BiSAR geometry brings a challenge for developing high precision data processing algorithms, we propose an image formation algorithm using equivalent velocity and nonlinear chirp scaling (NCS) to address the azimuth-variant signal processing problem. The proposed algorithm is verified by numerical simulation results.
机译:与目前的低地球轨道(LEO)卫星和飞机相比,高空平台(HAP)或近太空飞行器具有多个优势,因为HAP不受轨道力学和燃料消耗的限制。这些优势为某些需要持续监视或快速重访频率的特定遥感应用提供了潜力。本文研究了具有星载或机载发射机的HAP机载双基地合成孔径雷达(BiSAR)中的方位角信号处理,以进行高分辨率遥感。分析了系统配置,方位多普勒特性和二维回波谱。还提供了概念性的系统仿真结果。由于方位变BiSAR几何结构给开发高精度数据处理算法带来了挑战,因此我们提出了一种使用等效速度和非线性线性调频(NCS)的图像形成算法来解决方位变信号处理问题。数值仿真结果验证了该算法的有效性。

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