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基于虚拟孔径扩展的稀疏嵌套阵设计

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基于虚拟孔径扩展的稀疏嵌套阵设计
Sparse Nested Array Design for Virtual Aperture Extension
投稿时间:2019-12-31
DOI:10.15918/j.tbit1001-0645.2019.282
中文关键词:稀疏嵌套阵DOA估计自由度
English Keywords:sparse nested arrayDOA estimationdegree of freedom
基金项目:国家自然科学基金资助项目(61801024)
作者单位
闫肃北京理工大学 信息与电子学院, 北京 100081
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中文摘要:
为提高阵列自由度,提出了一种稀疏嵌套阵设计方法.该方法将增广嵌套阵(augmented nested array,ANA)中右侧子阵阵元与中间子阵距离稀疏化,从而扩展最远孔径.为保证虚拟孔径连续性,进一步提出了一种新型嵌套阵,即单侧稀疏嵌套阵.与ANAI-2、改进嵌套阵和最大阵元间距约束(maximum inter-element spacing constraint,MISC)阵列相比,该结构具有更长的连续段.仿真实验验证了提出结构在自由度、估计精度方面的优越性.
English Summary:
A sparse nested array concept of distributing the right-side elements of two level augmented nested array (ANA) sparsely was proposed for degree of freedom (DOF) enhancement. The new strategy was arranged to make the distances between the right-side elements and the right most sensor in the middle subarray of ANA larger than N1 to extend the furthest aperture successfully. In order to keep the continuity of virtual aperture, a new nested array, referred to as one side sparse nested array (OS-SNA), was proposed. Compared with the improved nested array ANAI-2 and maximum inter-element spacing constraint (MISC), the new nested array can generate more consecutive lags. Simulation results show the superiorities of the proposed OS-SNA in DOF and the precision estimation.
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