首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Design of Broadband Planar Arrays Based on the Optimization of Aperiodic Tilings
【24h】

Design of Broadband Planar Arrays Based on the Optimization of Aperiodic Tilings

机译:基于非周期性平铺优化的宽带平面阵列设计

获取原文
获取原文并翻译 | 示例
           

摘要

Antenna arrays based on aperiodic tilings have been shown to exhibit low sidelobe levels and modest bandwidths over which grating lobes are suppressed. In addition, compared to conventional periodic arrays, these arrays are naturally thinned (i.e., mean inter element spacing is greater than ). The generation of these arrays involves placing array elements at the locations of the vertices of an aperiodic tiling. To obtain a realizable design, the entire array is then scaled and truncated to achieve a desired minimum element spacing and aperture size. This paper demonstrates that it is possible to greatly extend the bandwidth of these arrays by incorporating a simple perturbation scheme into the basic array generation process. The implementation of this perturbation scheme is straightforward and it lends itself well to being combined with an optimization technique such as the genetic algorithm. It is successfully used to generate arrays that have large bandwidths (peak sidelobe level dB with no grating lobes) of up to a minimum element spacing of . Moreover, the flexibility of this technique will be further demonstrated by introducing a slight variation of the basic scheme that is capable of generating arrays with extremely wide bandwidths. An example will be presented for an array design that has a bandwidth corresponding to a minimum element spacing of up to .
机译:已经显示出基于非周期性平铺的天线阵列表现出较低的旁瓣电平和适度的带宽,在这些带宽上可以抑制光栅瓣。另外,与传统的周期阵列相比,这些阵列自然变薄了(即,平均元素间间距大于)。这些阵列的生成涉及将阵列元素放置在非周期性平铺的顶点位置。为了获得可实现的设计,然后按比例缩放和截断整个阵列,以实现所需的最小元素间距和孔径大小。本文证明,通过将简单的扰动方案合并到基本阵列生成过程中,可以大大扩展这些阵列的带宽。这种摄动方案的实现很简单,并且很容易与诸如遗传算法的优化技术相结合。它已成功用于生成具有大带宽(最大旁瓣电平dB,无光栅瓣)且最小元素间距为的阵列。此外,将通过引入基本方案的微小变化来进一步证明该技术的灵活性,该基本方案能够生成具有极宽带宽的阵列。将给出一个阵列设计的示例,该阵列设计的带宽对应于最小元素间距最大为。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号