使用GNSS无源雷达进行LEO目标探测的演示:概念验证

Md Sohrab Mahmud, S. U. Qaisar, A. Lambert, C. Benson
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引用次数: 1

摘要

本文介绍了利用全球导航卫星系统(GNSS)无源雷达估计运动目标轨迹的超长持续时间相干积分概念。提出了该概念的理论框架,并进行了实践论证。本实验的目的是模拟GPS信号被近地轨道物体散射的场景,由于其多径特性,间接信号与直接信号具有不同的多普勒和相位等特性。对间接信号的适当估计可以从间接信号中去除大部分调制,从而观察到副本和实际信号之间随时间的相位差。给出了系统的处理方法和预测精度。在这个实验中使用的两个GPS接收器中的一个是保持静止的。另一个以恒定的速度移动,与参考接收器保持固定的距离。在室外和室内进行了实验,以确认GPS信号在此目的中的利用,同时证明相位跟踪在目标定位中的潜在应用。首先从理论上推导了完整的估计方法,然后利用室外和室内试验数据进行了实验验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Demonstration of LEO object detection using GNSS passive radar: A proof of concept
This paper demonstrates the concept of very long duration coherent integration to estimate the trajectory of a moving object using Global Navigation Satellite System (GNSS) passive radar. The theoretical framework of the concept is presented followed by a practical demonstration. The purpose of this experiment is to replicate the scenario where a GPS signal is scattered by a low earth orbit object and due to the multipath, the indirect signal has different properties in comparison to the direct signal such as Doppler and phase. A proper estimation of the indirect signal can remove most of the modulation from the indirect signal and thereby observe the phase difference over time between the replica and the actual signal. The processing method and the predicted accuracy for the proposed system are shown. One of the two GPS receivers used in this experiment is kept stationary. The other is moving at a constant speed keeping a fixed distance from the reference receiver. The experiment was performed outdoors as well as indoors to confirm the utilization of GPS signal in this purpose and at the same time to prove the potential use of phase tracking for target localization. The complete estimation method is theoretically derived and then experimentally confirmed using experimental data collected from both outdoor and indoor tests.
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