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Design of Higher-Order Circular Array Antenna with Multiple Patch Elements Based on Angular Momentum

机译:基于角动量的多贴片元素设计高阶圆形阵列天线

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This paper presents the generation of modes of angular momentum of the orbital type using a proposed array antenna fed with Rotman lens of multiple layers of compact size. The gain of orbital angular momentum is enhanced by the proposed microstrip antenna, which is a circular array antenna with nine elements fed with Rotman lens utilizing the patch element of high gain. Antenna gain can be enhanced in an effective manner; the patch element is attached with two slots loaded in a stacked patch. The circular array when employing the feeding network with Rotman lens causes excitation of different input ports, which produces carrying beams of orbital angular momentum with mode numbers m = 0, m = +/- 1, m = +/- 2, m = +/- 3, and m = +/- 4. A phase shift of 160 deg is achieved on the output ports in the adjacent position for meeting the requirement of the phase of orbital angular momentum modes of m = +/- 4. The detection angle of the ports of the beam and array is adjusted by modifying the Rotman lens for achieving the uniform distribution of amplitude on the output ports of the antenna. Therefore, effective improvement is observed in the radiation pattern of the orbital angular momentum beams, which obtains equal amplitude in all the output ports. The fabrication of a prototype antenna of C band is done, and measurements are performed. Simulated results match the measured results, indicating that generation of orbital angular momentum is done by the antenna proposed in this paper, which can be used in communication systems based on orbital angular momentum.
机译:本文介绍了使用具有多层紧凑型层的旋转镜头的提出的阵列天线来产生轨道类型的角动量模式。所提出的微带天线增强了轨道角动量的增益,这是一种圆形阵列天线,其具有利用高增益的贴片元件的旋转仪镜头供给九个元素。天线增益可以以有效的方式增强;贴片元素附加有两个插槽,其中包含在堆叠的补丁中。使用带有Rotman镜头的馈电网时的圆形阵列导致不同输入端口的激励,从而产生轨道角动量的携带光束,其中模式数m = 0,m = +/- 1,m = +/- 2,m = + / - 3,M = +/- 4.在相邻位置的输出端口上实现160°的相移,以满足M = +/- 4的轨道角动量模式的相位的要求通过修改滚动镜头来调节光束和阵列的端口的角度,以实现天线的输出端口上的幅度的均匀分布。因此,在轨道角动量束的辐射图案中观察到有效改进,其在所有输出端口中获得相同的幅度。完成C频带的原型天线的制造,并进行测量。模拟结果匹配测量结果,表明轨道角动量的产生是由本文提出的天线完成的,这可以在基于轨道角动量的通信系统中使用。

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