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首页> 外文期刊>Antennas and Propagation, IEEE Transactions on >Generalized Space-Filling Gosper Curves and Their Application to the Design of Wideband Modular Planar Antenna Arrays
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Generalized Space-Filling Gosper Curves and Their Application to the Design of Wideband Modular Planar Antenna Arrays

机译:广义空间填充Gosper曲线及其在宽带模块化平面天线阵列设计中的应用

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摘要

The Peano-Gosper space-filling curve provides an excellent framework for designing planar antenna array distributions with modular architectures and suppressed sidelobes over a relatively wide bandwidth. The curve consists of a self-avoiding path that intersects a triangular lattice and its construction is based on the iterative application of a generating curve. There exist a number of other recently discovered curves, coined generalized Gosper curves, that possess properties similar to those of the Peano-Gosper curve but are based on larger and more complex generating curves. In this paper these generalized curves will be examined as the framework for antenna array layouts. It will be shown that arrays based on these curves have a number of excellent characteristics while offering modular array configurations and sizes that are not inherent to Peano-Gosper arrays. Moreover, when combined with a simple recursive-perturbation technique, the element distributions of these arrays can be efficiently adjusted to generate designs with bandwidths that far exceed that of standard periodic- and triangular-lattice arrays. The efficacy of this technique will be demonstrated through design examples, including one that has more than a 10:1 bandwidth. Full-wave simulations of a wideband patch array will also be used to investigate the effects of mutual coupling on these array distributions.
机译:Peano-Gosper的空间填充曲线为使用模块化架构设计平面天线阵列分布并在相对较宽的带宽上抑制旁瓣提供了一个极好的框架。曲线由与三角形格相交的自回避路径组成,其构造基于生成曲线的迭代应用。还有许多其他最近发现的曲线,称为广义Gosper曲线,其特性与Peano-Gosper曲线相似,但基于更大,更复杂的生成曲线。在本文中,这些通用曲线将作为天线阵列布局的框架进行检查。将显示基于这些曲线的阵列具有许多出色的特性,同时提供了Peano-Gosper阵列所不具备的模块化阵列配置和尺寸。此外,当与简单的递归摄动技术结合使用时,可以有效地调整这些阵列的元素分布,以生成带宽远远超过标准周期和三角形晶格阵列的带宽的设计。此技术的功效将通过设计示例进行演示,其中包括带宽超过10:1的示例。宽带贴片阵列的全波仿真也将用于研究互耦合对这些阵列分布的影响。

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