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Glide-Symmetric Holey Leaky-Wave Antenna With Low Dispersion for 60 GHz Point-to-Point Communications

机译:用于60 GHz点对点通信的低分散的滑翔对称的HOLDY漏光天线

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摘要

In this article, two novel efficient leaky-wave antennas (LWAs) with stable radiation patterns operating in the 60 GHz band are proposed. The LWAs are implemented in groove-gap waveguide (GGW) technology. To mitigate the beam squint due to the dispersive nature of LWAs, complementary-dispersive prisms are coupled to the LWA radiation aperture. The antennas are implemented in fully metallic purely holey periodic structures, resulting in a more cost-effective and robust manufacturing process compared to previously reported pin-based structures. Two prisms are proposed, one with mirror symmetry and one with glide symmetry. When the prism possesses a glide symmetry, much fewer holes are required while maintaining a similar performance, which even further decreases the fabrication costs. The complex propagation constant is optimized for low sidelobe levels (SLLs) with tailored hole diameters and waveguide dimensions, thus for the first time demonstrating the capability of using glide-symmetric holes to control the leakage rate. Two prototypes with mirror- and glide-symmetric prisms are theoretically synthesized and validated by the simulated and experimental results. A frequency bandwidth of 11% is achieved for both prototypes with the beam squint within +/- 0.9 degrees (mirror) and +/- 1.7 degrees (glide), SLLs below -15 dB (mirror) and -13 dB (glide), total efficiency almost 90%, and realized gain of 17 +/- 0.5 dB at a fixed observing angle. The developed antennas are intended for mm-wave point-to-point communications.
机译:在本文中,提出了两种具有稳定辐射图案的新型高效泄漏波天线(LWA)在60GHz带中操作。 LWA在沟槽间隙波导(GGW)技术中实现。为了减轻由于LWAS的分散性引起的光束斜面,互补分散棱镜耦合到LWA辐射孔。天线以完全金属纯粹的多孔周期性结构实现,与先前报告的基于销的结构相比,导致更具成本效益和鲁棒的制造过程。提出了两种棱镜,一个具有镜面对称的一个,一个具有滑动对称性。当棱镜具有滑动对称时,需要更少的孔,同时保持类似的性能,这甚至进一步降低了制造成本。复杂的传播常数针对具有定制孔直径和波导尺寸的低侧链电平(SLL)进行了优化,因此首次示出了使用滑翔对称孔来控制泄漏速率的能力。具有镜像和滑翔对称棱镜的两个原型是由模拟和实验结果进行理论上合成和验证的。对于+/- 0.9度(镜子)和+/- 1.7度(滑动),SLL低于-15dB(镜像)和-13 dB(滑行),可以实现11%的频率带宽为11%的原型实现11%总效率近90%,并以固定的观察角度实现17 +/- 0.5 dB的增益。开发的天线旨在用于MM波点对点通信。

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