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Impact of 3D Antenna Radiation Patterns on TDOA-Based Wireless Localization of UAVs

机译:3D天线辐射方向图对基于TDOA的无人机无线定位的影响

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Next big commercial applications of drones require to fly the drone beyond the visual line of sight (BVLOS). This inevitable ability to fly BVLOS will also necessitate the ability to keep track of the drone's location, in order to ensure successful completion of the intended service. In this context, we explore the fundamental limits of 3D localization of drones in conjunction with the effects of the 3D antenna radiation patterns. Although localization of drone/unmanned aerial vehicle (UAV) is a well-studied topic in the literature, its relationship to the antenna effects remains mostly unexplored. In this paper, we investigate the impact of antenna radiation pattern on the accuracy of time-difference-of-arrival (TDOA)-based localization of the UAV. Specifically, we consider a scenario where a fixed number of radio-frequency (RF) sensors, placed at some known locations on the ground, collect the TDOA measurements from the signals transmitted from the UAV, and estimate the location of the UAV from these observations. In order to study the impact of the antenna effects on the fundamental limits of the TDOA-based positioning scheme, we develop a simple analytical model to approximate the total antenna gains experienced by an air-to-ground (A2G) link, for various orientations of the antennas. We then derive the Cramer-Rao lower bound for the TDOA based localization scheme, for all three combinations of the transmit and the receive antenna orientations: vertical-vertical (VV), horizontal-horizontal (HH), and vertical-horizontal (VH).
机译:无人机的下一个大型商业应用需要将无人机飞出视线(BVLOS)。这种不可避免的飞行BVLOS的能力还需要跟踪无人机的位置的能力,以确保成功完成预期的服务。在这种情况下,我们结合3D天线辐射方向图,探索了无人机3D本地化的基本限制。尽管无人机/无人机的定位(UAV)是文献中经过充分研究的话题,但其与天线效应之间的关系仍未得到充分研究。在本文中,我们研究了天线辐射方向图对基于到达时间差(TDOA)的无人机定位精度的影响。具体来说,我们考虑这样一种情况:固定数量的射频(RF)传感器放置在地面上的某些已知位置,从无人飞行器发送的信号中收集TDOA测量值,并根据这些观测值估计无人飞行器的位置。为了研究天线效应对基于TDOA的定位方案的基本限制的影响,我们开发了一种简单的分析模型来近似估算空对地(A2G)链路在各种方向上经历的总天线增益的天线。然后,针对发射和接收天线方向的所有三个组合:垂直-垂直(VV),水平-水平(HH)和垂直-水平(VH),我们得出基于TDOA的定位方案的Cramer-Rao下界。

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