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E-Textile Conductors and Polymer Composites for Conformal Lightweight Antennas

机译:适形轻型天线的电子纺织导体和聚合物复合材料

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We present a conformal and lightweight antenna technology based on E-textile conductors and polymer-ceramic composites. Unique advantages of the proposed technology are its structural integrity, light weight and conformity to the platform. E-textile conductors are fabricated with single wall carbon nanotube (SWNT) and Ag coated textiles. They demonstrate good structural integrity with polymer composites due to their mechanical compatibility. Similarly, polymer composites demonstrate superior RF performance with permittivity ranging from 3 to 13. Fabrication process for E-textile conductors and integration process with polymer composites is described in detail. We also demonstrated merit of the proposed technology with a simple patch antenna whose radiation performance is measured when it was flat and conformed onto a cylindrical surface. We compared its performance with that of an ideal patch. Experiments suggested that the sample patch antenna based on the proposed technique achieved 6 dB gain, which is 2 dB below a patch which has the same dimensions and made of ideal lossless materials. When it is conformed onto a cylindrical surface, we achieved 2.5 dB less gain than that of antenna realized with a PEC surface. This clearly validates the merit of the proposed conformal antenna technique based on non-traditional materials.
机译:我们提出一种基于电子纺织导体和聚合物-陶瓷复合材料的保形轻量天线技术。拟议技术的独特优势在于其结构完整性,重量轻和与平台的一致性。电子纺织导体是用单壁碳纳米管(SWNT)和涂银的纺织品制成的。由于它们的机械相容性,它们与聚合物复合材料表现出良好的结构完整性。类似地,聚合物复合材料表现出优异的RF性能,介电常数为3到13。详细介绍了电子纺织导体的制造工艺以及与聚合物复合材料的集成工艺。我们还用简单的贴片天线展示了所提议技术的优点,该贴片天线在平坦且贴合于圆柱形表面时可以测量其辐射性能。我们将其性能与理想补丁的性能进行了比较。实验表明,基于所提出技术的样本贴片天线可实现6 dB的增益,比具有相同尺寸并由理想无损材料制成的贴片低2 dB。当它贴合在圆柱表面上时,我们获得的增益比使用PEC表面实现的天线要低2.5 dB。这清楚地验证了所提出的基于非传统材料的共形天线技术的优点。

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