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首页> 外文期刊>IEEE Transactions on Signal Processing >Thinned Coprime Array for Second-Order Difference Co-Array Generation With Reduced Mutual Coupling
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Thinned Coprime Array for Second-Order Difference Co-Array Generation With Reduced Mutual Coupling

机译:用于二阶差异共阵的变薄的COPRIME阵列,具有减少的相互耦合

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摘要

In this work, we present a new coprime array structure termed thinned coprime array (TCA), which exploits the redundancy in the structure of existing coprime array and achieves the same virtual aperture and degrees of freedom (DOFs) as the conventional coprime array with much fewer number of sensors. In comparison to other sparse arrays, thinned coprime arrays possess more unique lags (total number of difference co-arrays) than the nested arrays, while the number of consecutive lags (connected co-arrays) generated is close to 75% of the consecutive lags of the nested arrays with hole-free co-arrays. The resulting structure is much sparser and the number of sensor pairs with small separation is significantly reduced. Theoretical properties and proofs are provided and simulations are presented to demonstrate its robustness against heavy levels of mutual coupling using compressive sensing based direction of arrival estimation as well as certain additional desirable characteristics.
机译:在这项工作中,我们提出了一个新的Coprime阵列结构被称为变薄的Coprime阵列(TCA),它利用现有的CopRime阵列结构中的冗余,并实现了与传统的COPRIME阵列相同的虚拟孔径和自由度(DOF)更少的传感器。与其他稀疏阵列相比,变薄的Coprime阵列具有比嵌套阵列更独特的滞后(差分共同阵列),而生成的连续滞后数(连接的Co-arrays)的数量接近连续滞后的75%嵌套阵列与无孔的共轨。所得到的结构是很多稀疏,并且具有小分离的传感器对的数量显着降低。提供了理论性能和证据,并提出了使用基于压缩的到达估计方向和某种额外理想的特征来展示其对互联耦合的重质层的鲁棒性。

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