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Co-design of Antenna Element and Ground Plane for Printed Monopoles Embedded in Wireless Sensors

机译:无线传感器嵌入印刷垄断的天线元件和地面平面的共同设计

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This work presents the results of a study on Euclidean and fractal small antennas operating in the 2-3 GHz range, which were designed according to the size and bandwidth constraints imposed by wireless multimedia sensor networks. The performance of small antennas depends heavily on their electrical size, which is controlled by the size of the ground plane. We cannot design small antennas for tiny sensor nodes without considering the effect of the ground plane. The tested schemes have been characterized in terms of electrical size, fractional VSWR bandwidth, and broadband total radiation efficiency. A suitable Figure-of-Merit is also suggested, which is an attempt to gather all fundamental antenna parameters in a single scalar quantity. The results show that a large ground plane does not necessarily produce a better printed antenna. Moreover, each antenna element couples to the ground plane in its own unique way. Meander-line antennas manage to outperform more involved antenna configurations in a fair comparison.
机译:这项工作介绍了在2-3 GHz范围内操作的欧几里德和分形小天线的研究结果,该研究根据无线多媒体传感器网络施加的尺寸和带宽约束设计。小天线的性能大大取决于它们的电尺寸,其由地面平面的尺寸控制。我们不能为微小传感器节点设计小天线,而不考虑接地平面的效果。测试方案已经表征在电尺寸,分数VSWR带宽和宽带总辐射效率方面。还提出了一种合适的优点,这是一种尝试以单个标量数来收集所有基本天线参数。结果表明,大型地面平面不一定产生更好的印刷天线。而且,每个天线元件以自行方式耦合到地面平面。蜿蜒的线天线可以在公平的比较中管理更优于更多涉及的天线配置。

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