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用于全球导航卫星系统射频干扰定位的软件定义无线电

Software Defined Radio for GNSS Radio Frequency Interference Localization.

作者信息

Taylor Fred, Gattis Evan, Trapani Lucca, Akos Dennis, Lo Sherman, Walter Todd, Chen Yu-Hsuan

机构信息

Ann and H.J. Smead Aerospace Engineering Sciences, University of Colorado Boulder, Boulder, CO 80303, USA.

Department of Aeronautics and Astronautics, Stanford University, Stanford, CA 94305, USA.

出版信息

Sensors (Basel). 2023 Dec 22;24(1):72. doi: 10.3390/s24010072.

Abstract

The use of radio direction finding techniques in order to identify and reject harmful interference has been a topic of discussion both past and present for signals in the GNSS bands. Advances in commercial off-the-shelf radio hardware have led to the development of new low-cost, compact, phase coherent receiver platforms such as the KrakenSDR from KrakenRF whose testing and characterization will be the primary focus of this paper. Although not specifically designed for GNSSs, the capabilities of this platform are well aligned with the needs of GNSSs. Testing results from both benchtop and in the field will be displayed which verify the KrakenSDR's phase coherence and angle of arrival estimates to array dependent resolution bounds. Additionally, other outputs from the KrakenSDR such as received signal strength indicators and the angle of arrival confidence values show strong connections to angle of arrival estimate quality. Within this work the testing that will be primarily presented is at 900 MHz, with results presented from a government-sponsored event where the Kraken was tested at 1575.42 MHz. Finally, a discussion of calibration of active antenna arrays for angle of arrival is included as the introduction of active antenna elements used in GNSS signal collection can influence angle of arrival estimation.

摘要

使用无线电测向技术来识别和排除有害干扰,一直是过去和现在关于全球导航卫星系统(GNSS)频段信号的讨论话题。商用现货无线电硬件的进步催生了新的低成本、紧凑型、相位相干接收机平台,如KrakenRF公司的KrakenSDR,本文将主要聚焦于对其进行测试和特性描述。尽管该平台并非专门为全球导航卫星系统设计,但其功能与全球导航卫星系统的需求高度契合。文中将展示来自实验室和实地的测试结果,这些结果验证了KrakenSDR的相位相干性以及到达角估计达到与阵列相关的分辨率界限。此外,KrakenSDR的其他输出,如接收信号强度指标和到达角置信度值,显示出与到达角估计质量的紧密联系。在这项工作中,主要展示的测试是在900兆赫进行的,同时还给出了在一次政府赞助活动中的测试结果,在该活动中Kraken在1575.42兆赫进行了测试。最后,文中还讨论了用于到达角的有源天线阵列的校准,因为在全球导航卫星系统信号采集过程中引入有源天线元件会影响到达角估计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f568/10781236/f9903011eee2/sensors-24-00072-g001.jpg

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