建立一个共同的相位基准,以比较合成数据和射频距离测量

Michael J. Kastle, J. A. Malas
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引用次数: 1

摘要

当创建由可比较的合成范围和测量范围的复杂散射场样本组成的公共数据集时,当每个数据集的相位参考不一致时,可能会产生差异。当使用信号处理技术生成目标散射场的一维(距离轮廓)或二维(合成孔径雷达或SAR图像)表示时尤其如此,其中距离仓和跨距离仓形成。由于目标散射体在合成和测量场景中相对于彼此移动,距离轮廓和SAR图像可能会不对齐或具有不同的bin振幅。获得等效数据样本需要注意测量数据的校准过程和相位基准位置。本文将通过对特定目标和旋转系统的实验数据的分析来解决常见的相位参考问题。为当前挑战的可能解决方案提供了建议。数据分析将包括使用Theodolite激光测量的合成和测量范围数据比较、范围校准以及目标位置和范围对准过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Establishing a common phase reference for comparing synthetic data to RF range measurements
Discrepancies can result when creating common data sets consisting of comparable synthetic and measured range complex scattered field samples when the phase references of each do not coincide. This can be especially true when using signal processing techniques to produce one dimensional (range profiles) or two dimensional (Synthetic Aperture Radar or SAR images) representations of the target scattered field where range bins and cross-range bins are formed. Range profiles and SAR images can be misaligned or have different bin amplitudes due to target scatterers in synthetic and measured scenarios shifted with respect to one another. Obtaining equivalent data samples requires attention to the measured data calibration process and phase reference location. This paper will address the common phase reference problem by an analysis of experimental data for specific targets and rotation system. Suggestions are provided for possible solutions to current challenges. The data analysis will include synthetic and measured range data comparisons, range calibration, and target position and range alignment processes using Theodolite laser measurements.
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