Generalized Thinned Coprime Array for DOA Estimation

Junpeng Shi, Yongxiang Liu, Fang-qing Wen, Zhen Liu, Panhe Hu, Zhenghui Gong
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引用次数: 3

Abstract

Owing to the large degrees of freedom and reduced mutual coupling by producing difference coarrays, nonuniform linear arrays have aroused great interest in direction of arrival (DOA) estimation. Previous works have presented some new sparse arrays, such as the thinned coprime array. In this paper, we propose a generalized thinned coprime array by introducing the flexible inter-element spacings, where the conventional one can be seen as a special case. We derive closedform expression for the range of consecutive lags, written as the functions of the antenna numbers and inter-element spacings. We show that, after optimization, the proposed array can achieve more consecutive lags than the other coprime arrays. In particular, the optimized results also provide the minimum number of antenna pairs with small separation. Simulation results demonstrate the superiority of the proposed GTCA using the subspace-based method.
用于DOA估计的广义稀疏协素阵列
非均匀线性阵列由于产生差分阵的大自由度和减少相互耦合,在到达方向估计方面引起了广泛的关注。以前的工作已经提出了一些新的稀疏数组,如稀疏的协素数数组。本文通过引入柔性元间间距,提出了一种广义的稀疏素阵,其中常规的稀疏素阵可以看作是一种特例。我们导出了连续滞后范围的近似表达式,将其写成天线数和单元间间距的函数。结果表明,优化后的阵列比其他素数阵列具有更多的连续滞后。特别地,优化结果还提供了最小的天线对数和较小的间隔。仿真结果验证了基于子空间的GTCA方法的优越性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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