Phase-shifter-less Vortex Electromagnetic Wave Generation Technology with Tunable Topological Charge/Steering Angle under Random Initial Phase Condition of Phase-locked Source

Yuliang Zhou, Kaiyuan Yao, Xiaona Li, Y. Huang, Haiyan Jin
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Abstract

This paper demonstrates how to implement a vortex electromagnetic wave generation system with beam steering using only delay lines as phase-shifting elements. The system is based on uniform circular array and phased array technology. A detailed theoretical derivation is presented, which yields an input frequency matrix corresponding to each target case. Furthermore, considering the random initial phase problem of the actual phase-locked source, the above scheme is further improved in this paper. By cleverly setting the circuit structure, the influence of the initial phase inconsistency on the phase control system is filtered out. The performance is verified by analytical calculations and full-wave electromagnetic simulations, which are in good agreement with the proposed theory. The scheme proposed in this paper can completely get rid of the phase shifter and realize the free adjustment of the topological charge number/beam steering angle. The adjustment accuracy depends on the tuning accuracy of the phase-locked source, which can achieved an accuracy over 1Hz at a cost of less than six dollars, which makes it an interesting and flexible low-cost vortex electromagnetic wave generation scheme.
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锁相源随机初始相位条件下拓扑电荷/转向角可调无移相涡流电磁波产生技术
本文演示了如何仅使用延迟线作为移相元件实现具有波束导向的涡流电磁波产生系统。该系统基于均匀圆阵和相控阵技术。给出了详细的理论推导,得到了对应于每种目标情况的输入频率矩阵。此外,考虑到实际锁相源的随机初始相位问题,本文对上述方案进行了进一步改进。通过对电路结构的巧妙设置,滤除了初始相位不一致对相位控制系统的影响。分析计算和全波电磁仿真验证了该方法的性能,结果与所提出的理论基本一致。本文提出的方案可以完全去除移相器,实现拓扑电荷数/波束转向角的自由调节。调节精度取决于锁相源的调谐精度,锁相源可以达到1Hz以上的精度,成本不到6美元,是一种有趣而灵活的低成本涡旋电磁波产生方案。
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