Department of Electronic Engineering, Tor Vergata University of Rome and CNIT - National Inter-University Consortium for Telecommunications, RU of Rome, via del Politecnico 1, 00133 Rome, Italy.
Fraunhofer Institute for High Frequency Physics and Radar Techniques FHR, Fraunhoferstrasse 20, 53343 Wachtberg, Germany.
Sensors (Basel). 2020 Jan 14;20(2):463. doi: 10.3390/s20020463.
The increasing interest in the radar detection of low-elevation and small-size targets in complicated ground environments (such as urban, suburban, and mixed country areas) calls for a precise quantification of the radar detection capabilities in those areas. Hence, a set of procedures is devised and tested, both theoretically and experimentally, using a commercial X-band radar, to (i) calibrate the radar sensor (with an online evaluation of its losses) using standard scatterers, (ii) measure the multipath effect and compensate for it, and (iii) create "true radar cross section" maps of the area of interest for both point and distributed clutter. The above methods and the related field results are aimed at future qualification procedures and practical usage of small, cheap, and easily moveable radars for the detection of low-observable air targets, such as unmanned air vehicles/systems (UAV/UAS), in difficult ground areas. A significant set of experimental results as discussed in the paper confirms the great relevance of multipath in ground-based radar detection, with the need for correcting measures.
在复杂的地面环境(如城市、郊区和混合乡村地区)中,对低仰角和小尺寸目标的雷达探测越来越感兴趣,这就需要精确量化这些区域的雷达探测能力。因此,设计并测试了一套使用商业 X 波段雷达的理论和实验程序,(i)使用标准散射体校准雷达传感器(在线评估其损耗),(ii)测量多径效应并进行补偿,以及(iii)为点和分布式杂波创建感兴趣区域的“真实雷达散射截面”图。上述方法和相关的现场结果旨在为未来的小型、廉价且易于移动的雷达的资格程序和实际应用提供参考,这些雷达可用于探测低可观测空中目标,如无人机/系统 (UAV/UAS),在困难的地面区域。本文讨论了一组重要的实验结果,证实了多径效应对地面雷达探测的重要性,需要采取纠正措施。