论文标题
一个集成的,相控的电源分隔器,用于元图阵列天线
An Integrated, Phase-Controlled Power Divider for Metasurface Array Antennas
论文作者
论文摘要
我们介绍了用于元图阵列天线的分阶段,调制,电源分配网络的设计。特定的跨表面阵列设计包括一系列波导,每个波导都在微波炉(x频段)频率下散发出动态可调的超材料元件的子阵列。要保持单端口设备,复合阵列需要一个功率分隔器,该功率分隔器可以以相等的功率激发每个分支波导。此外,功率分离器还必须对每个分支波导进行规定的相移,以减轻特定于跨表面的光瓣。呈现的设计具有空心的金属波导,带有带有超材料虹膜上壁的导电板。单个空心金属主波指饲料用于将每个分支波导的功率耦合。仔细定向的插槽控制着从主饲料分布到每个分支的场的大小和相位。所有波导都可以从单个金属块中加工,并具有超大型图案的印刷电路板层压到组件的顶部。最终的设计在机械上是强大的,并且能够高功率运行,同时保留了低成本,低功率消耗,轻巧和低调的特征,在元面天线设计中常见。
We present the design of a phased, modulated, power distribution network for metasurface array antennas. The specific metasurface array design comprises a series of waveguides, each feeding a sub-array of dynamically tunable metamaterial elements that radiate at microwave (X-band) frequencies. To remain a one-port device, the composite array requires a power divider that can excite each branch waveguide with equal power. Further, the power divider must also apply a prescribed phase shift to each branch waveguide to mitigate metasurface-specific grating lobes. The presented design features hollow metal waveguides, with a conducting sheet patterned with metamaterial irises serving as the upper wall. A single hollow metal main waveguide feed is used to couple power to each of the branch waveguide. Carefully oriented slots control both the magnitude and phase of the field distributed from the main feed to each branch. All waveguides can be machined from a single block of metal, with a metamaterial-patterned printed circuit board laminated to the top of the assembly. The resulting design is mechanically robust and capable of high power operation while retaining the low-cost, low-power consumption, lightweight, and low-profile features common in metasurface antenna designs.