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Compact, Slotted, Printed Antennas for Dual-Band Communication in Future Wireless Sensor Networks

机译:紧凑,开槽,印刷天线,用于未来无线传感器网络中的双频通信

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摘要

Inverted-F antennas (IFAs) are a primary choice to implement the radiating system of portable devices. A tried and tested idea can remain topical if proven useful in modern applications. This paper shows that printed IFAs (PIFAs) are capable of forming robust, compact, dual-band radiating systems for wireless microsensors with an adjustable spacing between bands. Reactive tuning was applied by inductively loading the structures with prefractal slots; inductive slot loading degenerates higher-order resonances and increases the fractional bandwidth (FBW). The current distributions revealed that most of the element area is used for radiation at both resonances. In radiation terms, the antennas provide satisfactory gains and high efficiencies (≥82%). A simple figure of merit is used to compare the performance of the three PIFAs head to head. Operation at 2.5 GHz and 5.5 GHz indicated that changes in slot geometry almost double the FBW. The proposed antennas serve both the 5.15–5.35 GHz U-NII and the 5.8 GHz ISM bands; at the lower band, their size is less or equal to the half-wavelength dipole. This study of dual-band antennas also showed that the aggregate FBW of a PIFA is bounded; by degenerating higher-order modes, the designer redistributes whatever bandwidth is available by the antenna itself to the desired bands.
机译:倒置 - F天线(IFA)是实现便携式设备辐射系统的主要选择。如果在现代应用中证明,试验和测试的想法可以保持局部。本文表明,印刷的IFAS(PIFA)能够为具有可调节间距之间的无线微传感器形成鲁棒,紧凑,双频带辐射系统。通过电感加载预制槽的结构来施加反应调谐;电感槽加载退化较高级的共振并增加分数带宽(FBW)。目前的分布揭示了大多数元件区域用于两个共振的辐射。在辐射术语中,天线提供令人满意的增益和高效率(≥82%)。一个简单的优点形式用于将三个PIFAS头的性能与头部进行比较。 2.5 GHz和5.5 GHz的操作表示插槽几何中的变化几乎是FBW的双倍。拟议的天线提供5.15-5.35 GHz U-NII和5.8 GHz ISM频段;在较低频带处,它们的尺寸小于或等于半波长偶极子。这对双频带天线的研究还表明PIFA的聚集FBW是有界的;通过退化更高阶模式,设计者重新分配天线本身可用的带宽到所需的频带。

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