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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Dynamic Programming Applied to Large Circular Arrays Thinning
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Dynamic Programming Applied to Large Circular Arrays Thinning

机译:动态编程应用于大型圆形阵列细化

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摘要

In conventional arrays, improving angular resolution requires larger aperture which demands more number of elements. On the other hand, array thinning is an efficient method of achieving narrow beamwidth (high angular resolution) with fewer number of elements. Reducing the number of elements results in reducing weight, cost, hardware complexity, and energy consumption. In this paper, a novel dynamic programming algorithm of array thinning with the objective of reducing sidelobe levels (SLLs), desired for large circular arrays, is proposed. The circular array is partitioned into annular rings, and the objective of the optimization problem is to determine the number of active elements in each ring. Then, active elements of the rings are selected. Although optimal array thinning is an NP-hard problem, converting the problem of selecting active elements into the number of active elements in each ring causes a huge reduction in computational complexity of the proposed algorithm that makes it affordable for large arrays. Moreover, beampatterns with very low SLLs are synthesized.
机译:在常规阵列中,提高角度分辨率需要更大的孔径,这需要更多数量的元件。另一方面,阵列细化是用较少数量的元件实现窄波束宽度(高角度分辨率)的有效方法。减少元件数量可减少重量,成本,硬件复杂性和能耗。在本文中,提出了一种新的阵列细化动态规划算法,其目的是减少大型圆形阵列所需的旁瓣电平(SLL)。将圆形阵列划分为多个环形环,优化问题的目的是确定每个环中的活动元素数。然后,选择环的活动元素。尽管最佳阵列细化是一个NP难题,但将选择活动元素的问题转换为每个环中活动元素的数量会大大降低所提出算法的计算复杂度,从而使大型数组负担得起。此外,合成了具有非常低的SLL的波束图案。

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