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Multibeam SIW Slotted Waveguide Antenna System Fed by a Compact Dual-Layer Rotman Lens

机译:由紧凑型双层Rotman透镜馈送的多束SIW缝隙波导天线系统

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A multibeam antenna system fed by a compact Rotman lens is presented in multilayer substrate integrated waveguide (SIW) technology. The lens is implemented in two layers using a new transition based on several star-shaped coupling slots and an SIW integrated reflector. Compared to standard rectangular coupling slots, this transition is broadband and maximizes power transfer between the two layers of the lens regardless the position of the beam port along the focal arc of the Rotman lens. The radiating part is an array of 15 slotted waveguides. These waveguides are centrally fed to enhance their bandwidth and reduce the “long line effect.” To validate the proposed concepts, an antenna system has been prototyped at 24.15 GHz. The designed transition leads to a physical size reduction of about 50% for the Rotman lens, and more than 33% for the antenna footprint compared to standard single-layer implementations. The experimental results demonstrate a scanning range of and a 4% bandwidth for ; the isolation between input ports is better than .
机译:在多层基板集成波导(SIW)技术中提出了由紧凑型Rotman透镜馈电的多波束天线系统。使用基于几个星形耦合槽和SIW集成反射镜的新过渡,将透镜分为两层。与标准矩形耦合槽相比,这种过渡是宽带的,并且使光束两层之间的功率传递最大化,而不管光束端口沿Rotman透镜焦距的位置如何。辐射部分是15个开槽波导的阵列。这些波导被集中馈送以增强其带宽并减少“长线效应”。为了验证提出的概念,天线系统已在24.15 GHz上进行了原型设计。与标准的单层实现相比,设计的过渡可使Rotman透镜的物理尺寸减小约50%,并使天线的占地面积减小33%以上。实验结果表明的扫描范围为,带宽为4%。输入端口之间的隔离度优于。

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