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Fractal antenna engineering: the theory and design of fractal antenna arrays

机译:分形天线工程:分形天线阵列的理论与设计

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摘要

A fractal is a recursively generated object having a fractional dimension. Many objects, including antennas, can be designed using the recursive nature of a fractal. In this article, we provide a comprehensive overview of recent developments in the field of fractal antenna engineering, with particular emphasis placed on the theory and design of fractal arrays. We introduce some important properties of fractal arrays, including the frequency-independent multi-band characteristics, schemes for realizing low-sidelobe designs, systematic approaches to thinning, and the ability to develop rapid beam-forming algorithms by exploiting the recursive nature of fractals. These arrays have fractional dimensions that are found from the generating subarray used to recursively create the fractal array. Our research is in its infancy, but the results so far are intriguing, and may have future practical applications.
机译:分形是具有分数维的递归生成的对象。可以使用分形的递归特性来设计包括天线在内的许多对象。在本文中,我们提供了分形天线工程领域最新进展的全面概述,尤其着重于分形阵列的理论和设计。我们介绍了分形阵列的一些重要属性,包括与频率无关的多波段特性,实现低旁瓣设计的方案,系统化的细化方法以及通过利用分形的递归性质来开发快速波束形成算法的能力。这些数组具有分数维,分数维可从用于递归创建分形数组的生成子数组中找到。我们的研究尚处于起步阶段,但迄今为止的结果很有趣,并且可能会在将来得到实际应用。

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