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Liquid Metal Application for Continuously Tunable Frequency Reconfigurable Antenna

机译:液态金属在连续可调频率可重构天线中的应用

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This paper presents two different designs for frequency reconfigurable antennas capable of continuous tuning. The radiator, for both antenna designs, is a microstrip patch, formed from liquid metal, contained within a microfluidic channel structure. Both patch designs are aperture fed. The microfluidic channel structures are made from polydimethylsiloxane (PDMS). The microfluidic channel structure for the first design has a meander layout and incorporates rows of posts. The simulated antenna provides a frequency tuning range of approximately 118% (i.e. 4.36 GHz) over the frequency range from 1.51 GHz to 5.87 GHz. An experimental result for the fully filled case shows a resonance at 1.49 GHz (1.3% error compared with the simulation). Experienced rheological behavior of the liquid metal necessitates microfluidic channel modifications. For that reason, we modified the channel structure used to realise the radiating patch for the second design. Straight channels are implemented in the second microfluidic device. According to simulation the design yields a frequency tuning range of about 77% (i.e. 3.28 GHz) from 2.62 GHz to 5.90 GHz.
机译:本文针对能够连续调谐的频率可重构天线提出了两种不同的设计。对于两种天线设计,辐射器都是微带贴片,由液态金属形成,包含在微流体通道结构中。两种贴片设计均采用光圈进给。微流体通道结构由聚二甲基硅氧烷(PDMS)制成。用于第一种设计的微流体通道结构具有曲折的布局,并包含成排的立柱。模拟天线在1.51 GHz至5.87 GHz的频率范围内提供大约118%(即4.36 GHz)的频率调谐范围。完全充满的情况下的实验结果显示出在1.49 GHz处的谐振(与仿真相比,误差为1.3%)。液态金属的流变行为必须对微流体通道进行修饰。因此,我们修改了用于实现第二个设计的散热贴片的通道结构。直通道在第二微流体装置中实现。根据仿真,该设计在2.62 GHz至5.90 GHz的频率调谐范围约为77%(即3.28 GHz)。

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