基于GPS的被动雷达二维地面目标定位

P. Gomez-del-Hoyo, M. Jarabo-Amores, D. Mata-Moya, N. del-Rey-Maestre, J. Rosado-Sanz
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引用次数: 0

摘要

全球定位系统(GPS)卫星由于其全球覆盖和世界各地多颗卫星的可用性,为无源雷达系统提供了很有希望的照明机会,但它们在地面的低功率限制了系统的覆盖范围。本文提出了一种基于GPS的无源雷达,利用数字阵列处理技术对地面目标进行定位。针对信号电平问题,提出了一种结合重构参考信号、自适应滤波技术和空间滤波技术的处理方案。采用常规波束形成技术在探测阶段前提高目标回波电平,采用高分辨率DoA估计技术估计目标方位。考虑到系统的几何形状、距离和方位信息,可以定位地面目标。利用实际雷达数据对系统运行进行了分析。在测量活动中,为了验证目的,使用了合作车辆。结果证实了GPS信号对地面目标的探测和定位。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
2D Ground Target Location Using GPS based Passive Radar
Global Positioning System (GPS) satellites are promising illumination opportunity for Passive Radar systems due to their global coverage and the availability of multiple satellites wherever over the world, but their low power at ground level limits system coverage. In this paper, a GPS based Passive Radar exploiting digital array processing techniques is presented for ground target location. To face signal level problems, a processing scheme combining reconstructed reference signals, adaptive filtering techniques and spatial filtering is implemented. Conventional beamforming techniques are used to increase target echo level before the detection stage, and high resolution DoA estimation techniques are applied to estimate targets' azimuth. Tacking into account the system geometry, range and azimuth information, ground targets can be located. Real radar data is used to analyse system operation. During the measurement campaign, a cooperative vehicle was employed for validation purposes. Results confirm GPS signals for ground targets detection and localization.
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