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通过应用优化的多圆形光学相控阵实现具有超低旁瓣的快速宽范围光束转向。

Fast and wide-range optical beam steering with ultralow side lobes by applying an optimized multi-circular optical phased array.

作者信息

Zhang Fangzheng, Zhang Daocheng, Pan Shilong

出版信息

Appl Opt. 2018 Jun 20;57(18):4977-4984. doi: 10.1364/AO.57.004977.

Abstract

A multi-circular optical phased array (OPA) is proposed and investigated through simulation to realize fast and wide-range optical beam steering with ultralow side lobes. The proposed multi-circular OPA has a circularly symmetrical distribution, and its radical element spacings are optimized by a modified genetic algorithm to achieve the best side lobe suppression. Specifically, the peak side lobe level (PSLL) of the far-field pattern in 0° beam direction reaches as low as 0.0715 for a 73-element optimized multi-circular OPA, which is much better than a multi-circular OPA with uniform radical element spacing (the PSLL is 0.3686). The prominent feature of the proposed OPA is that, once the OPA is optimized towards a specific elevation direction by the modified genetic algorithm, a wide-angle optical beam steering with nearly the same side lobe suppression can be achieved without updating the OPA distribution, which makes it possible for fast optical beam steering over a wide scanning range. In the simulation, ultralow side lobe beam steering with an elevation angle from 0° to 30° and an azimuth angle from 0° to 360° is achieved with the PSLL variation less than 0.001. The relationship between the optimized PSLL and the elevation angle used for OPA optimization is also investigated, which is helpful in achieving the best side lobe suppression for different scanning ranges. The proposed OPA is expected to find applications such as laser radar, high-resolution display, and free space optical communications.

摘要

提出了一种多圆光学相控阵(OPA),并通过仿真进行研究,以实现具有超低旁瓣的快速和宽范围光束转向。所提出的多圆OPA具有圆对称分布,其径向元件间距通过改进的遗传算法进行优化,以实现最佳的旁瓣抑制。具体而言,对于一个73元件的优化多圆OPA,在0°光束方向上远场图案的峰值旁瓣电平(PSLL)低至0.0715,这比具有均匀径向元件间距的多圆OPA(PSLL为0.3686)要好得多。所提出的OPA的突出特点是,一旦通过改进的遗传算法将OPA朝着特定仰角方向进行优化,无需更新OPA分布就可以实现具有几乎相同旁瓣抑制的广角光束转向,这使得在宽扫描范围内进行快速光束转向成为可能。在仿真中,实现了仰角从0°到30°、方位角从0°到360°的超低旁瓣光束转向,PSLL变化小于0.001。还研究了优化后的PSLL与用于OPA优化的仰角之间的关系,这有助于在不同扫描范围内实现最佳的旁瓣抑制。所提出的OPA有望在激光雷达、高分辨率显示和自由空间光通信等领域得到应用。

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