UAS同时定位多个RFI源的测量特性

A. Perkins, S. Lo, J. D. Powell
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引用次数: 0

摘要

为了对抗干扰器带来的威胁,一种基于无人机系统的系统已经被开发出来,能够快速定位GPS干扰源。此前,该项目的重点是一种名为JAGER的无人机系统(UAS),该系统一直致力于开发一种能够定位单一静态射频干扰(RFI)源[1]的系统。JAGER是一种由三个主要系统组成的无人机:用于测量干扰源方位的传感器,负责估计干扰源位置的定位系统,以及以最小化定位成本(通常被认为是在阈值内定位源的时间)的方式飞行的路径规划系统。这项工作提出了传感器的能力分析,相控阵天线,在一个环境中有多个RFI源。了解传感器的功能是选择正确的定位和路径规划方法的关键。额外干扰源的引入对传感器从单一接收信号强度(RSS)模式同时检测和测量多个干扰源的方位的能力提出了关键挑战。本文对3元、7元和19元阵列在多干扰源环境下的性能进行了表征和理论分析。不同阵列尺寸和旁瓣抑制的波束宽度的差异会导致较小阵列的方位测量偏差,而较大阵列的尺寸、重量和货币成本都额外,这就产生了一组需要考虑的权衡,以便系统定位来自无人机系统的多个RFI源。为了检测多个信号源,JAGER使用机载波束转向天线来生成RSS模式(通过测量信号强度)。对于每个RSS模式,使用用于确定单个源[3]方位的3dB方法确定检测到的每个波瓣的方位。在两种不同的模拟多源环境下对该方法的理论性能进行了评估。最后,提出了基于期望角分离能力的多源轴承传感器的设计约束。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Measurement Characterization for Localizing Multiple RFI Sources Simultaneously from a UAS
To combat the threat posed by jammers, a UAS based system has been developed to be able to rapidly localize the source of GPS interferers. Previously, the focus of the project, an unmanned aerial system (UAS) known as JAGER, has been on the development of a system capable of localizing a single static radio frequency interference (RFI) source [1]. JAGER is a UAS comprised of three main systems: the sensor to measure the bearing to the interference source, the localization system responsible for estimating the source location, and a path planning system to fly the vehicle in a way to minimize the cost of localization (typically thought of as the time to localize a source within a threshold) [2]. This works presents an analysis of the capabilities of the sensor, a phased array antenna, in an environment with multiple RFI sources. Understanding the sensor capabilities is key to being able to choose the right approach for localization and path planning. The introduction of additional interference sources poses a key challenge on the sensor’s ability to detect and measure the bearing to multiple sources simultaneously from a single receive signal strength (RSS) pattern. This paper presents a characterization and theoretical analysis of the performance of a 3-, 7-, and 19-element array in an environment with multiple interference sources. The difference in beamwidths of the different array sizes and side lobe suppression result in biases in the bearing measurements for the smaller arrays, while the larger arrays come at additional size, weight, and monetary costs, creating a set of tradeoffs to be considered for a system to localize multiple RFI sources from a UAS. To detect multiple sources, JAGER uses an onboard beam steering antenna to generate an RSS pattern (by measuring signal strength). For each RSS pattern, the bearing to each of the lobes detected is determined using the 3dB method used for bearing determination to a single source [3]. The theoretical performance of this method is evaluated in two different simulated multi-source environments. Finally, some design constraints are presented for the bearing sensor for detecting multiple sources based on the desired angular separation capabilities.
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