镓基液态金属x波段雷达反射信号测量

Minhyeok Kim, Sehyeok Kang, S. Doo, Daeyoung Kim
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引用次数: 0

摘要

雷达(Radio Detection and Ranging,简称RADAR)是一种重要的监视和侦察系统,它通过探测反射信号来获得雷达到目标的距离和目标的速度。反射信号的大小受目标的雷达截面、发射和接收天线的特性、雷达与目标的距离、发射信号的功率和波长等因素的影响而变化。因此,RCS是决定目标能否被雷达系统观测到的重要特征。它是基于目标的材料和形状。我们测量了一个简单的方形(20 × 20厘米)目标的反射信号,该目标由一种新材料,镓基液态金属合金制成,并与包括铜,铝在内的知名金属进行了比较。铝靶的反射信号幅度最大,是液态金属靶的2.4倍。我们还通过测量F-22三维模型目标覆盖/不覆盖铜、铝和液态金属的反射率(~1/95比)来研究形状的影响。从侧面看,覆盖铜的F-22模型反射信号的最大幅度是液态金属的2.6倍。液态金属的反射率研究将有助于液态金属基频率选择表面或超材料的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
X-band RADAR Reflected Signal Measurement of Gallium-based Liquid Metal
RADAR(Radio Detection and Ranging) is an important system for surveillance and reconnaissance by detecting a reflected signal which obtains the range from the radar to the target, and the velocity of the target. The magnitude of the reflected signal varies due to the radar cross section of the target, characteristic of the transmission and reception antenna, distance between the radar and the target, and power and wavelength of the transmitted signal. Thus, the RCS is the important characteristic of the target to determine if the target can be observed by the RADAR system. It is based on the material and shape of the target. We have measured the reflection signal of a simple square-shaped (20 × 20 cm) target made of a new material, a gallium-based liquid metal alloy and compared that of well-known metals including copper, aluminum. The magnitude of reflected signal of the aluminum target was the largest and it was 2.4 times larger than that of the liquid metal target. We also investigated the effect of the shape by measuring reflectance of the F-22 3D model(~1/95 ratio) target covered with/without copper, aluminium, and liquid metal. The largest magnitude of the reflected signal measured from side-view with the copper-covered F-22 model was 2.6 times greater than that of liquid metal. The reflectance study of the liquid metal would be helpful for liquid metal-based frequency selective surface or metamaterials.
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