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Development of a Three-Element Beam Steering Antenna for Bearing Determination Onboard a UAV Capable of GNSS RFI Localization

机译:一种用于轴承确定的三元梁转向天线的开发,无人机能够实现GNSS RFI定位

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Localization of radio frequency interference (RFI) sources requires some method of measuring the interference signal. A technique used for this problem in the past, coupled with an unmanned aerial vehicle (UAV), is using a collection of signal strength measurements to determine bearing to the source. This paper focuses on the improvements from a physical rotation based system to an electronic rotation system. Previously 30 seconds was required to collect a set of signal strengths to use for a bearing and now, with a beam steering antenna, that rotation time is reduced to just over 0.5 seconds. Here, the improvements to the measurement sensor onboard a UAV for RFI localization are detailed. Using the same philosophy to get bearing from a collection of signal strength measurements, these improvements move from a physical rotation to an electronic rotation through the development of a small and compact three-element beam steering antenna. Using this type of antenna allows for signal strength measurements at 500Hz and in motion and therefore enables a much higher observation rate, on the order of 2Hz, enabling the use of different navigation and path planning algorithms that could lead to much faster and more efficient localization. This paper describes the design, development and testing of the beam steering antenna itself, the algorithms for controlling the beam steering to be able to get the best observation performance, and finally demonstrates the performance of the antenna during live interference exercises at Edwards Airforce Base (AFB).
机译:射频干扰(RFI)源的定位需要一些测量干扰信号的方法。过去用于该问题的技术,与无人驾驶飞行器(UAV)相结合,是使用信号强度测量的集合来确定轴承到源。本文侧重于基于物理旋转系统到电子旋转系统的改进。以前需要30秒来收集用于轴承的一组信号强度,现在,具有光束转向天线,该旋转时间降低到超过0.5秒。这里,详细介绍了对RFI定位的UAV上的测量传感器的改进。使用相同的哲学来从信号强度测量的集合中获取轴承,这些改进通过开发小型和紧凑的三元梁转向天线来移动到电子旋转到电子旋转。使用这种类型的天线允许在500Hz和运动中进行信号强度测量,因此能够在2Hz的顺序实现更高的观察率,从而实现不同的导航和路径规划算法,这些算法可能导致更快,更高效的本地化。本文介绍了光束转向天线本身的设计,开发和测试,用于控制光束转向的算法,以便能够获得最佳观察性能,并且最终展示了在Edwards气体基地的现场干扰运动期间天线的性能( afb)。

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