不同稀疏天线阵列几何形状的DOA估计性能比较

Y. Abramovich, O. A. Gray, A. Gorokhov, N. Spencer
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引用次数: 21

摘要

在最大可能到达方向(DOA)估计精度的意义上,对具有固定传感器数量的非均匀线性天线阵列的三种几何形状进行了比较。采用Cramer-Rao界分析比较了在固定源环境下各几何形状的最优精度。通过最近介绍的算法获得的实际DOA估计仿真,证明了Cramer-Rao界分析在这些情况下的DOA估计的适用性。我们表明,以前尝试最大化连续相关滞后的数量并避免某些阵列几何形状中的缺失滞后并不一定会导致DOA估计性能的改善。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparison of DOA estimation performance for various types of sparse antenna array geometries
Three subclasses of geometries for nonuniform linear antenna arrays with a fixed number of sensors are compared in the sense of maximum possible direction-of-arrival (DOA) estimation accuracy. Cramer-Rao bound analysis is applied to compare the optimal accuracy for each geometry under some fixed source environment. Actual DOA estimation simulations, obtained by recently-introduced algorithms, are used to demonstrate the applicability of Cramer-Rao bound analysis for DOA estimation in these cases. We show that previous attempts to maximise the number of contiguous correlation lags and to avoid missing lags in certain array geometries does not necessarily lead to an improvement in DOA estimation performance.
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