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Design of Sparse Dome Antenna Array for Angle of Arrival Localization Systems

机译:到达角定位系统的稀疏圆顶天线阵列设计

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A design of a conformal 16-element patch array with antennas non-uniformly distributed over a hemispherical surface is presented. The considered array type allows 3D-positioning by angle of arrival (AOA) in hemispherical angular coverage that is desired for localization of UAV and other mobile robots in GNSS-denied environments. At the same time, the optimization of antenna positions helps to highly reduce the number of antennas needed to achieve suitable localization accuracy in desired angular range. The realized array was integrated as a receive array of a 24 GHz ISM band local positioning radar unit. Calibration and measurement results with transponder mounted on a 6D positioning system show the applicability of such type of highly sparse conformal array for use in 3D local positioning systems. Thus, the presented array introduces a cost-effective design solution for wireless localization within hemispherical coverage utilizing only two positioning units.
机译:提出了一种共形的16元素贴片阵列的设计,其天线在半球形表面上分布不均匀。所考虑的阵列类型允许在半球形角覆盖范围内通过到达角(AOA)进行3D定位,这对于在GNSS拒绝环境中的UAV和其他移动机器人进行本地化是需要的。同时,天线位置的优化有助于大大减少在所需角度范围内实现合适的定位精度所需的天线数量。实现的阵列集成为24 GHz ISM波段本地定位雷达单元的接收阵列。安装在6D定位系统上的应答器的校准和测量结果表明,这种类型的稀疏共形阵列适用于3D本地定位系统。因此,提出的阵列引入了一种经济有效的设计解决方案,用于仅使用两个定位单元的半球覆盖范围内的无线定位。

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