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Squint-looking differential synthetic aperture ladar: signal processing and experimental demonstration

机译:Squint看差动合成孔推拉:信号处理和实验示范

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摘要

Squint-looking differential synthetic aperture ladar (DSAL) is reported with detailed signal processing mathematics and high-resolution experimental demonstrations. Based on the DSAL principle and standard squint-looking synthetic aperture radar theory, the data processing procedures on squint-looking DSAL image formation are obtained. The experimental DSAL setup, operating in "step-stop" strip map mode, adopts a frequency chirped laser with a wavelength of 1550 nm as the illuminating source and a specially designed random phase generator to introduce large common mode random phase error (RPE) into the phase history data of both receiving subapertures. High-resolution DSAL images of a cooperative target at a distance of 1.85 m and squint-looking angle of -10 degrees or +10 degrees are demonstrated. The DSAL images, with or without large RPE, are all well focused by straightforwardly following the given data processing steps. The result illustrates that the DSAL technique is robust in removing common mode phase errors in squint-looking configuration. (C) 2019 Optical Society of America
机译:报告了斜视看起来的差动合成孔径Ladar(DSAL),详细的信号处理数学和高分辨率实验演示。基于DSAL原理和标准斜视的合成孔径雷达理论,获得了对斜视看DSAL图像形成的数据处理过程。实验DSAL设置,在“秒停止”条形图模式下,采用波长为1550nm的频率啁啾激光器作为照明源和专门设计的随机相发生器,将大型共模随机相位误差(RPE)引入接收子孔节的相位历史数据。对距离为1.85米的合作目标的高分辨率DSAL图像和-10度或+ 10度的斜视视角。 DSAL图像,有或没有大的RPE,遵循给定的数据处理步骤之后的直截了当。结果说明DSAL技术在静噪性配置中删除共模相误差方面是稳健的。 (c)2019年光学学会

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    《Applied optics》 |2020年第1期|共6页
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