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Hole Locations and a Filling Method for Coprime Planar Arrays for DOA Estimation

机译:用于DOA估计的CopRime平面阵列的孔位置和填充方法

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摘要

Coprime linear arrays (CLAs) have drawn lots of attention. Efforts have been made to reveal the hole locations in the difference coarrays of CLAs, based on which many methods have been proposed to fill the holes, lengthening the consecutive difference coarray part and increasing the effective degrees of freedom (DOFs). Compared with CLAs, two dimensional (2D) coprime planar arrays (CPAs) are more relevant to real applications. However, no closed-form expressions for the hole locations in the difference coarray of a CPA have been found in the open literature, and the advantage in terms of DOFs of CPAs has not been well explored. In this letter, the structure of the difference coarrays of CPAs is investigated and the exact expressions of all hole positions are provided. Then, a holes-filling method is proposed, by which the most critical holes in the difference coarray can be filled such that a difference coarray with more consecutive lags as well as higher effective DOFs can be obtained.
机译:CopRime线性阵列(CLA)造成了很多关注。已经努力揭示CLA差异偶联型孔的孔位置,基于已经提出了许多方法来填充孔,延长连续差异酰亚阵列部分并增加有效自由度(DOF)。与CLA相比,二维(2D)CopRime平面阵列(CPA)与真实应用更相关。然而,在公开文献中发现了CPA的差异Coarray中的孔位置的孔位置的闭合表达,并且CPA的DOF方面的优点并未得到很好的探索。在这封信中,研究了CPA的差异偶联谱系的结构,并且提供了所有孔位置的精确表达。然后,提出了一种孔填充方法,通过该孔填充方法可以填充差异酰亚钩子中的最关键孔,使得可以获得具有更连续滞后的差异亚拉肋以及更高的有效DOF。

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