Effect of different platforms on coupling compensation matrices in AOA estimation algorithms using small size UCA

T. Ghazaany, S. Zhu, S. R. Jones, R. Abd‐Alhameed, J. Noras, T. Buren, S. Marker
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引用次数: 1

Abstract

In this paper the sensitivity of the decoupling matrix used for mutual coupling compensation in small size uniform circular arrays has been studied. The compensation matrix is calculated using the receiving mode technique for a 5-element uniform circular array and applied to two groups of direction finding algorithms, namely phase comparison-based (interferometry) and subspace-based algorithms. In the tracking application considered the receiver array is deployed on a car roof or aircraft, so the geometry of the platform influences the compensation results. In this work, the effect of different ground plane geometries in terms of the standard deviation of angular error for each estimation algorithm using simulation results is investigated. The results show that the calibration conditions used to determine the compensation matrix affect the AOA estimation accuracy.
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基于小尺寸UCA的AOA估计算法中不同平台对耦合补偿矩阵的影响
本文研究了用于小尺寸均匀圆形阵列相互耦合补偿的解耦矩阵的灵敏度。利用五元均匀圆阵的接收模式技术计算补偿矩阵,并将补偿矩阵应用于两组测向算法,即基于相位比较(干涉法)和基于子空间的测向算法。在考虑的跟踪应用中,接收机阵列部署在车顶或飞机上,因此平台的几何形状会影响补偿结果。在这项工作中,利用仿真结果研究了不同的地平面几何形状对每种估计算法的角误差标准差的影响。结果表明,确定补偿矩阵的标定条件会影响AOA估计的精度。
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