论文标题
带有量身定制的镜头和量身定制反射器的涡流波的横梁发散降低
Beam Divergence Reduction of Vortex Waves with a Tailored Lens and a Tailored Reflector
论文作者
论文摘要
在本文中,我们提出了一个量身定制的镜头和一个量身定制的反射器,以减少由圆形圆形贴片天线阵列(UCA)在10 GHz处产生的轨道角动量波固有的大束差异。量身定制的镜头和量身定制的反射器分别由天线中心轴周围的形状函数(5)和(9)设计。将量身定制的镜头与没有常规镜头的UCA进行比较。使用量身定制的镜头时,模拟和测量结果显示出显着改善。随后,实施了量身定制的反射器并与没有常规反射器的UCA进行比较。首先,这两个反射器被模拟了印象深刻的场源,以忽略UCA的影响。两个反射器的模拟结果表明,当反射器的高度$ r_0 $的高度小于1.5 $λ$,而当反射器Theta的开头小于38°时(对于UCA(对于UCA的UCA),$ d $ $ d $ of $λ/2 $时,量身定制的反射器的性能比常规反射器更好。另外,用具有不同形状的PCB形状的真实UCA模拟反射镜,这可能会干扰反射器的反射波。两个透镜和两个反射镜在一个态室中制造和测量,并与模拟结果进行了比较。本文表明,涡旋波需要特殊的镜头或特殊的反射器,以便且横梁发散效果降低,尤其是当UCA的半径很大时。
In this paper, we present a tailored lens and a tailored reflector in order to reduce the large beam divergence inherent to Orbital Angular Momentum waves (OAM waves-Vortex waves) that are generated by an Uniform Circular Patch Antenna Array (UCA) at 10 GHz. The tailored lens and the tailored reflector are designed by the shape function (5) and (9) around the antenna s center axis, respectively. The tailored lens is compared to UCA without and with conventional lens. The simulated and measured results show a significant improvement when using the tailored lens. Following, a tailored reflector is implemented and compared to UCA without and with conventional reflector. Firstly, the two reflectors are simulated with an impressed field source to neglect the influence of the UCA. The simulated results of the two reflectors show that the tailored reflector has a better performance than the conventional reflector when the height of the reflector $r_0$ is less than around 1.5 $λ$ and when the opening angle of the reflector theta is less than 38° (for UCA with $d$ of $λ/2$). In addition, the reflectors are simulated with real UCA with different shapes of PCB, which can disturb the reflected waves from the reflector. Two lenses and two reflectors are manufactured and measured in an anechoic chamber and compared to the simulation results. This paper shows that the vortex waves needs a special lens or a special reflector to reduce effictively the beam divergence especially when the radius of the UCA is very large.