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Substrate integrated waveguide technology applied to dynamic beam forming techniques for 5G applications: Challenges and opportunities

机译:适用于5G应用的动态波束形成技术的基板集成波导技术:挑战与机遇

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This contribution presents the challenges and opportunities related to the employment of Substrate Integrated Waveguide (SIW) structures in mm-W 5G array systems with beam forming properties. These architectures usually include arrays of more than 100 antenna elements organized in sub-clusters, which are fed with proper amplitude and phase in order to obtain beam-steering capabilities. These systems generally operate in Ka band, on bandwidths that are larger than 10%, which calls for antennas that are capable of covering large frequency spans with uniform performance. The use of Substrate Integrated Waveguide technology in the design of both the antenna elements and the feeding section can help introduce features that reduce the system complexity, enhance antenna isolation, and allow for a low-cost implementation. Moreover, the use of tunable SIW antenna elements can introduce reconfigurability properties in clustered array configurations, opening for a number of advantages in terms of dynamic performance enhancement.
机译:这项贡献提出了与在具有波束形成特性的mm-W 5G阵列系统中使用衬底集成波导(SIW)结构相关的挑战和机遇。这些架构通常包括由100个以上的子簇组成的天线阵,以适当的幅度和相位馈电,以获得波束控制能力。这些系统通常在大于10%的带宽的Ka频段上运行,这就要求天线能够以统一的性能覆盖较大的频率跨度。在天线元件和馈电部分的设计中使用衬底集成波导技术可以帮助引入降低系统复杂性,增强天线隔离度并允许低成本实现的功能。此外,可调谐SIW天线元件的使用可以在群集阵列配置中引入可重新配置性,从而在动态性能增强方面具有许多优势。

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