飞机形状近场RCS测量中插值算法缩短测量时间的分析

H. Park
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引用次数: 0

摘要

隐身技术在现代战争中的重要性与日俱增,雷达截面(RCS)作为隐身技术的一项指标被广泛使用。利用基于图像的近场到远场变换算法在近距离单静态条件下测量RCS是有用的。然而,与其他方法相比,近场测量系统需要更长的测量时间。本文提出了在方位角域采用插值方法来减少测量数据。给出了根据采样率计算得到的远场RCS值,并给出了该算法在角域中应用插值的性能。实验结果表明,利用角域冗余可以将测量样本数倍地减少,同时产生与传统方法相似的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Analysis on the Reduction of Measurement Time Using Interpolation Algorithm in Near-field RCS Measurements for Aircraft Shape
The importance of stealth technology is increasing in modern warfare, and Radar Cross Section(RCS) is widely used as an indicator of stealth technology. It is useful to measure RCS using an image-based near-field to far-field transformation algorithm in short-range monostatic conditions. However, the near-field measurement system requires a longer measurement time compared to other methods. In this work, it is proposed to reduce the measured data using an interpolation method in azimuth angular domain. The calculated far-field RCS values according to the sampling rate is shown, and the performance of the algorithm applied with interpolation in the angular domain is presented. It is shown that measurement samples can be reduced several times by using the redundancy in the angular domain while producing results similar to the conventional method.
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