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Accelerating and abruptly-autofocusing beam waves in the Fresnel zone of antenna arrays

机译:天线阵列菲涅耳带中的波束加速和突然自动聚焦

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摘要

We introduce the concept of spatially accelerating (curved) beam waves in the Fresnel region of properly designed antenna arrays. These are transversely localized EM waves that propagate in free space in a diffraction-resisting manner, while at the same time laterally shifting their amplitude pattern along a curved trajectory. The proposedudbeams are the radiowave analogue of Airy and related accelerating optical waves, which, in contrast to their optical counterparts, are produced by the interference of discrete radiating elements rather than by the evolution of a continuous wavefront. Two dyadic array configurations are proposed comprising 2D line antennas: linear phased arraysudwith a power-law phase variation and curved power-law arrays with in-phase radiating elements. Through analysis and numerical simulations, the formation of broadside accelerating beams with power-law trajectories is studied versus the array parameters. Furthermore, the abrupt autofocusing effect, that occurs when beams of this kind interfere with opposite acceleration, is investigated. The concept and the related antenna setups can be of use in radar and wireless communications applications.
机译:我们介绍了在适当设计的天线阵列的菲涅耳区域中进行空间加速(弯曲)波束的概念。这些是横向局部的EM波,它们在自由空间中以抗衍射的方式传播,同时沿曲线轨迹横向移动其振幅模式。所提出的 u光束是艾里波和相关的加速光波的无线电波类似物,与它们的光学相对物相比,是由离散辐射元件的干扰而不是由连续波阵面的演化所产生的。提出了包括二维线天线的两个二元阵列配置:具有功率定律相位变化的线性相控阵 ud和具有同相辐射元件的弯曲功率定律阵列。通过分析和数值模拟,研究了具有幂律轨迹的宽边加速光束与阵列参数的关系。此外,研究了当这种光束干扰相反的加速度时发生的突然自动聚焦效果。该概念和相关的天线设置可以在雷达和无线通信应用中使用。

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