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Characterization of 3-D Printed Flexible Heterogeneous Substrate Designs for Wearable Antennas

机译:可穿戴天线的3D打印柔性异质衬底设计的表征

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This paper presents a novel and scalable approach to realizing 3-D printed flexible substrates for wearable antennas with customizable gain and bandwidth. The heterogeneous substrate designs presented are printed with a dual-extrusion fused deposition modeling printer consisting of a combination of Acrylonitrile Butadiene Styrene (ABS) tiles surrounded with flexible NinjaFlex (NF). The impact of combining these two materials with similar electric permittivty is a distribution of loss tangent in the substrate, which controls its RF performance while maintaining the flexibility. To demonstrate the versatility of this approach, three flexible 3-D printed microstrip patch antenna prototypes are designed, realized, and measured at 2.4 GHz, where the RF performance is characterized with different curvatures. The predicted and experimental results were observed to be in good agreement. All three designs show antenna performance stability with curvature, and a resonant frequency shifts less than 1.4%. Increases of up to 250% in gain or 400% in bandwidth were observed with varying ABS to NF percentage area. Furthermore, these flexible antenna designs are tested with human body contact for wearable applications, and the measured RF performance remains stable. This heterogeneous substrate design approach using an array of arbitrarily shaped tiles is scalable, simple, and can be implemented in a variety of RF design applications for flexibility.
机译:本文提出了一种新颖且可扩展的方法,以可定制的增益和带宽来实现可穿戴天线的3D打印柔性基板。所展示的异质基材设计是通过双挤出熔融沉积建模打印机进行印刷的,该打印机由丙烯腈丁二烯苯乙烯(ABS)瓷砖和柔性NinjaFlex(NF)包围而成。将这两种材料与相似的介电常数结合在一起所产生的影响是损耗角正切在基板中的分布,该分布控制了基板的RF性能,同时保持了灵活性。为了证明这种方法的多功能性,在2.4 GHz频率下设计,实现并测量了3个灵活的3D打印微带贴片天线原型,其中RF性能的特征在于不同的曲率。预测结果与实验结果吻合良好。所有这三种设计均显示出天线性能随曲率的稳定性,并且谐振频率偏移小于1.4%。随着ABS到NF百分比面积的变化,可以观察到增益最多增加250%或带宽增加400%。此外,这些可弯曲天线设计经过人体接触测试以用于可穿戴应用,并且测得的RF性能保持稳定。使用任意形状的瓷砖阵列的这种异质衬底设计方法是可扩展的,简单的,并且可以在各种RF设计应用中实现以实现灵活性。

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