Dynamic multiple beam forming based on the fiber laser phased array

Guan Huang, Guoyun Lv, Yangyu Fan
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Abstract

Multiple beam generation and adaptive control plays an important role in the laser propagation applications. The existing approaches are usually mechanical, so they have many limitations in terms of accuracy, bandwidth, and flexibility. In this paper, a kind of dynamic multiple beam forming method based on the fiber laser phased array (FLPA) is proposed. In this method, the FLPA based on the multi-objective optimization algorithm is employed, which can theoretically generate any number of outgoing beams, and dynamically adjust the power of each beam. The numerical simulation experiments based on a 19-cell FLPA were conducted. The results show that two stable outgoing beams of FLPA can be generated after about 200 iterations, and the power distribution error of the two beams can reach less than 4%. In addition, the two beams can also be combined into one after about 50 iterations.
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基于光纤激光相控阵的动态多波束形成
多光束产生和自适应控制在激光传输中起着重要的作用。现有的方法通常是机械的,因此它们在准确性、带宽和灵活性方面有许多限制。提出了一种基于光纤激光相控阵(FLPA)的动态多波束形成方法。该方法采用基于多目标优化算法的FLPA,理论上可以产生任意数量的出射光束,并动态调节每个光束的功率。基于19单元FLPA进行了数值模拟实验。结果表明,经过约200次迭代后,可产生两束稳定的FLPA出射光束,两束的功率分配误差可达4%以下。此外,两束光也可以在大约50次迭代后合并为一束。
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