Gomez-Del-Hoyo Pedro, Del-Rey-Maestre Nerea, Jarabo-Amores María-Pilar, Mata-Moya David, Benito-Ortiz María-de-Cortés
Signal Theory and Communications Department, Polytechnic School, University Campus, University of Alcalá, 28805 Madrid, Spain.
Sensors (Basel). 2022 Feb 23;22(5):1724. doi: 10.3390/s22051724.
Global Positioning System (GPS) satellites offer promising opportunity for Passive Radar systems due to their global coverage and the availability of multiple satellites throughout the world. However, their low power at ground level limits system coverage. In this paper, a GPS based Passive Radar which exploits a single illumination source, and uses digital array processing for ground targets localization is presented. To face signal power problems, a processing scheme combining reconstructed reference signals, adaptive filtering techniques and spatial filtering is implemented. Conventional beamforming techniques are used to increase the level of the target echo before the detection stage, and high resolution DoA estimation techniques are applied to estimate targets azimuth. Ground target localization in local Cartesian space is performed taking into account the system geometry, range and azimuth information. Both synthetic and real radar data are used to analyse system operation. During the measurement campaign, a cooperative vehicle was used for validation purposes. Results confirm that ground targets detection and localization are feasible using a single GPS transmitter.
全球定位系统(GPS)卫星因其全球覆盖以及全球范围内多颗卫星的可用性,为无源雷达系统提供了广阔的机遇。然而,它们在地面的低功率限制了系统覆盖范围。本文提出了一种基于GPS的无源雷达,该雷达利用单一照明源,并使用数字阵列处理来进行地面目标定位。为解决信号功率问题,实施了一种结合重建参考信号、自适应滤波技术和空间滤波的处理方案。传统波束形成技术用于在检测阶段之前提高目标回波的电平,高分辨率到达角(DoA)估计技术用于估计目标方位。考虑到系统几何形状、距离和方位信息,在局部笛卡尔空间中进行地面目标定位。综合雷达数据和实际雷达数据均用于分析系统运行情况。在测量活动期间,使用了一辆协同车辆用于验证目的。结果证实,使用单个GPS发射机进行地面目标检测和定位是可行的。