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Emulating Polarimetric Radar Signals from Tornadic Debris Using a Radar-Cross-Section Library

机译:使用雷达横截面库从龙卷壁碎片模拟偏振雷达信号

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In an effort to investigate scattering characteristics of debris particles in tornadoes, a numerical polarimetric radar emulator was developed. Regions of negative differential reflectivity have commonly been observed but are still yet to be explained physically. There are hypotheses that suggest common debris alignment and/or dominant scattering from objects with high radar-cross-section (RCS) values, but they are extremely challenging to verify due to the danger within tornadoes. It is, however, possible to numerically construct the scenes through representative simulation to verify the plausible causes. This serves as our primary motivation to develop the radar emulator. The novel aspects of this work are the realistic trajectory derivation, which is based on physical air-drag model, and the representative diversity of RCS contributions from each debris particle, developed through a realistic polarimetric RCS modeling and anechoic chamber measurements.
机译:在努力研究龙卷风中碎屑颗粒的散射特性,开发了一种数值偏振雷达仿真器。通常观察到负差分反射率的区域,但尚未在物理上解释。有假设,建议与具有高雷达横截面(RCS)值的物体的常见碎片对齐和/或显性散射,但由于龙卷风内的危险,它们非常具有挑战性。然而,可以通过代表性仿真来数值地构造场景以验证合理的原因。这是我们开发雷达仿真器的主要动机。该工作的新颖方面是现实的轨迹推导,其基于物理空气拖动模型,以及通过现实的极性RCS建模和AneChoic室测量开发的每个碎片粒子的RCS贡献的代表性多样性。

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