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Spatial spectral estimation direction finding algorithms at subarray level for complete calibration array and partly calibration array

机译:用于完全校准阵列和部分校准阵列的子阵列级别的空间光谱估计方向查找算法

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摘要

Phased array system is an important application field of spatial spectral estimation direction finding. In this paper two spatial spectral estimation direction finding algorithms applied to large phased array at subarray level are studied. For complete calibration array, we construct an array manifold based on subarray structure and then present a MUSIC algorithm at subarray level. Another algorithm we study is suitable for partly calibration array. It's array manifold is constructed by using of the phase center and gain of each subarray. This algorithm doesn't need to calibrate the whole array. So it can reduce the cost of the hardware and software. But the limitation is that its super-resolution direction finding can be achieved only within beamwidth of the array. We analyses and compare the two algorithms by simulations. The simulation results demonstrate the efficiency of the presented algorithms.
机译:相控阵系统是空间谱估计测向的重要应用领域。本文研究了应用于子阵列级大相控阵的两种空间谱估计方向寻找算法。对于完整的校准阵列,我们基于子阵列结构构造一个阵列流形,然后在子阵列级提出MUSIC算法。我们研究的另一种算法适用于部分校准阵列。它的阵列流形是通过使用每个子阵列的相位中心和增益来构造的。该算法不需要校准整个数组。这样可以减少硬件和软件的成本。但是局限性在于,它的超分辨率方向发现只能在阵列的波束宽度内实现。我们通过仿真来分析和比较这两种算法。仿真结果证明了所提出算法的有效性。

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