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Thinning of 2D and 3D Fractal Antenna Arrays with Bounded and Unbounded Fractal Distribution Functions for Celestial Communications

机译:利用有界和无界分形分布函数进行天体通信的2D和3D分形天线阵列的细化

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Fractal antenna arrays are geometry-based thinned arrays having multiband applications. The major challenge of these arrays is their large number of elements at higher expansion factors. This article presents the thinning of fractal antenna arrays while maintaining an appropriate balance between the side lobe level and beam width by using various quantized fractal distribution functions. A 2D square fractal antenna array and 3DSierpinski gasket antenna array are considered in this article to validate the proposed distribution functions. Nearly one third of the antenna elements are thinned in each successive iteration except in the case of a one-count distribution function. The proposed technique can simplify practical implementation and exhibits better performance for various parameters such as the side lobe level, side lobe angle, and half power beam width than fully populated fractal antenna arrays.
机译:分形天线阵列是具有多频带应用的基于几何的减薄阵列。这些阵列的主要挑战是它们的大量元素具有更高的扩展因子。本文介绍了分形天线阵列的减薄,同时通过使用各种量化的分形分布函数,在旁瓣电平和波束宽度之间保持适当的平衡。本文考虑了二维正方形分形天线阵列和3DSierpinski垫片天线阵列,以验证所提出的分布函数。除了单计数分布函数的情况外,在每个连续的迭代中将近三分之一的天线元件变薄。所提出的技术可以简化实际的实现,并且与诸如完整分布的分形天线阵列相比,对于诸如旁瓣电平,旁瓣角度和半功率波束宽度的各种参数表现出更好的性能。

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