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A Modular Textile Antenna Design Using Snap-on Buttons for Wearable Applications

机译:使用可穿戴式应用的按扣的模块化纺织天线设计

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An antenna design concept with detachable radiation elements offering modular geometry reconfigurabilities for wearable applications is presented. By utilizing snap-on buttons, both as the radio-frequency (RF) connection and mechanical holding mechanism, different modularly interchangeable microstrip patches are employed to demonstrate geometry reconfigurabilities in terms of polarization and resonance frequency. The uniqueness of the design arises from the fact that all configurations share one common feed structure which consists of a two-layered substrate including snap-on buttons, a ground plane, and a proximity coupled feed. To show the concept, modular realizations with different functionalities in terms of polarization or resonance frequency are demonstrated in this paper. First, a detachable patch offering interchangeable right-hand circular polarization (RHCP) and left-hand circular polarization (LHCP) at 5 GHz is proposed. Second, a demonstration of a planar inverted-F antenna (PIFA) concept offering interchangeable resonance frequencies for the 2.4- and 5.3-GHz bands of wireless local area networks (WLAN) is given. Finally, a patch module designed for 8-GHz operation is presented to show the versatility in frequency modularity. Experimental results of the fabricated antennas in free space, worn by a torso phantom and in bending conditions, validate the concept and prove that this type of modular design offers convenient, passive, low cost, and versatile system reconfigurabilities, which can benefit wearable applications.
机译:提出了一种具有可拆卸辐射元件的天线设计概念,该天线设计为可穿戴应用提供了模块化的几何可重构性。通过利用作为射频(RF)连接和机械固定机构的卡扣式按钮,采用了不同的模块化可互换微带贴片,以展示极化和谐振频率方面的几何可重构性。该设计的独特性在于所有配置共享一个共同的馈送结构,该结构由两层基板组成,包括按扣,接地层和接近耦合馈送。为了说明这一概念,本文演示了在极化或谐振频率方面具有不同功能的模块化实现。首先,提出了在5 GHz时可互换的右旋圆极化(RHCP)和左旋圆极化(LHCP)的可拆卸贴片。其次,给出了平面倒F天线(PIFA)概念的演示,该概念为无线局域网(WLAN)的2.4和5.3 GHz频带提供了可互换的谐振频率。最后,介绍了专为8 GHz操作而设计的补丁模块,以展示频率模块的多功能性。在躯干体模和弯曲条件下在自由空间中制作的天线的实验结果验证了这一概念,并证明了这种模块化设计提供了便捷,无源,低成本和通用的系统可重构性,这可以使可穿戴应用受益。

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