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MISC Array: A New Sparse Array Design Achieving Increased Degrees of Freedom and Reduced Mutual Coupling Effect

机译:MISC阵列:一种新的稀疏阵列设计,可提高自由度并减少相互耦合效应

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Recently, nested and coprime arrays have attracted considerable interest due to their capability of providing increased array aperture, enhanced degrees of freedom (DOFs), and reduced mutual coupling effect compared to uniform linear arrays (ULAs). These features are critical to improving the performance of direction-of-arrival estimation and adaptive beamforming. In this paper, a new sparse array configuration based on the maximum inter-element spacing constraint (MISC) is proposed. The MISC array configuration generally consists of three sparse ULAs plus two separate sensors that are appropriately placed. The MISC array configurations are designed based on the inter-element spacing set, which, for a given number of sensors, is uniquely determined by a closed-form expression. We also derive closed-form expressions for the number of uniform DOFs of the MISC arrays with any number of sensors. Compared with the existing sparse arrays, the MISC array enjoys two important advantages, namely, providing a higher number of DOFs and reducing the mutual coupling effects. Numerical simulations are conducted to verify the superiority of the MISC array over other sparse arrays.
机译:最近,由于与均匀线性阵列(ULA)相比,嵌套阵列和互质阵列具有提供增加的阵列孔径,增强的自由度(DOF)和减小的互耦效应的能力,因此引起了人们的极大兴趣。这些功能对于提高到达方向估计和自适应波束形成的性能至关重要。本文提出了一种基于最大元素间距约束(MISC)的稀疏阵列结构。 MISC阵列配置通常由三个稀疏的ULA加上适当放置的两个单独的传感器组成。 MISC阵列配置是根据元素间间隔集设计的,对于给定数量的传感器,元素间间隔集由封闭形式的表达式唯一确定。我们还导出了具有任意数量传感器的MISC阵列的均匀DOF数量的闭式表达式。与现有的稀疏阵列相比,MISC阵列具有两个重要的优点,即提供了更多的自由度和减少了相互耦合的影响。进行数值模拟以验证MISC阵列相对于其他稀疏阵列的优越性。

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