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Design and optimization of a shaped-beam ka-band substrate integrated waveguide antenna array

机译:异型束Ka波段基片集成波导天线阵列的设计与优化

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Millimeter-wave antenna array Beam Forming Networks in Substrate Integrated Waveguide (SIW) technology are an attractive alternative to the use of TEM transmission lines, such as microstrip or stripline. SIW allows reducing the transmission losses while maintaining low price and simple, yet accurate, fabrication of the Printed Circuit Board technology. However, SIW design has additional restrictions and limitations when compared to TEM transmission lines. This includes increased footprint, a need to use additional transitions to other transmission lines or some types of radiating element as well as a more complicated overall design. In this contribution the authors propose the design of a Ka-band antenna array, which extensively uses SIW technology. The design is based on the requirements of a real-life satellite application. These include limitations imposed on return loss bandwidth, gain, radiation pattern shape, and polarization. Moreover, also the feeding method is imposed and the antenna array footprint should be minimized. A prototype of the proposed design has been fabricated and measured. The results show a 8.9% return loss bandwidth, a 12% circular polarization bandwidth and a radiation efficiency over 60%. The obtained RF performance as well as other aspects, such as footprint, are compared with an alternative state-of-the-art design, which has been developed according to the same requirements but using different architecture and technologies.
机译:基板集成波导(SIW)技术中的毫米波天线阵列波束形成网络是使用TEM传输线(如微带线或带状线)的一种有吸引力的替代方法。 SIW可以降低传输损耗,同时保持低廉的价格以及印刷电路板技术的简单而精确的制造。但是,与TEM传输线相比,SIW设计还有其他限制和限制。这包括增加的占位面积,需要使用到其他传输线或某些类型的辐射元件的额外过渡以及更复杂的总体设计。在这项贡献中,作者提出了广泛使用SIW技术的Ka波段天线阵列的设计。该设计基于现实生活中的卫星应用需求。这些包括对回波损耗带宽,增益,辐射方向图形状和极化的限制。此外,还施加了馈电方法,并且天线阵列的占位面积应最小化。拟议设计的原型已经制作完成并进行了测量。结果表明,回波损耗带宽为8.9%,圆偏振带宽为12%,辐射效率超过60%。将获得的RF性能以及其他方面(例如占位面积)与替代的最新设计进行了比较,该设计是根据相同的要求但使用不同的体系结构和技术开发的。

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