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Atomic Norm-Based DOA Estimation with Sum and Difference Co-arrays in Coexistence of Circular and Non-circular Signals

机译:基于原子规范的DOA估计,圆形和非圆形信号共存中的总和和差差

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摘要

Sparse arrays can increase the array aperture and degrees of freedom through the construction of either sum or difference co-arrays or both. In order to exploit the advantages of sparse arrays while estimating directions of arrival (DOAs) of a mixture of circular and non-circular signals, in this paper, a gridless DOA estimation method is proposed by employing a recently introduced enhanced nested array, whose virtual arrays have no holes. The virtual signals derived from both sum and difference co-arrays are constructed based on atomic norm minimization. It is shown that the proposed method also works when the circular and non-circular signals come from the same set of directions. Simulation results are provided to demonstrate the performance of the proposed method.
机译:稀疏阵列可以通过构造总和或差异共同或两者来增加阵列孔径和自由度。 为了利用稀疏阵列的优点,同时估计圆形和非圆形信号混合的到达方向(DOA),本文通过采用最近引入的增强型嵌套阵列来提出无线数据库DOA估计方法,其虚拟 阵列没有洞。 从SUM和差差阵列导出的虚拟信号是基于原子标准最小化构造的。 结果表明,当圆形和非圆形信号来自相同的方向时,所提出的方法也有效。 提供了仿真结果以证明该方法的性能。

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