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Via-less electromagnetic band-gap-enabled antenna based on textile material for wearable applications

机译:基于可穿戴应用的纺织材料的透视电磁带式的天线

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A compact fabric antenna structure integrated with electromagnetic bandgap structures (EBGs) covering the desired frequency spectrum between 2.36 GHz and 2.40 GHz for Medical Body-Area Networks (MBANs), is introduced. The needs of flexible system applications, the antenna is preferably low-profile, compact, directive, and robust to the human body's loading effect have to be satisfied. The EBGs are attractive solutions for such requirements and provide efficient performance. In contrast to earlier documented EBG backed antenna designs, the proposed EBG behaved as shielding from the antenna to the human body, reduced the size, and acted as a radiator. The EBGs reduce the frequency detuning due to the human body and decrease the back radiation, improving the antenna efficiency. The proposed antenna system has an overall dimension of 46×46×2.4 mm 3 . The computed and experimental results achieved a gain of 7.2 dBi, a Front to Back Ratio (FBR) of 12.2 dB, and an efficiency of 74.8%, respectively. The Specific Absorption Rate (SAR) demonstrates a reduction of more than 95% compared to the antenna without EBGs. Moreover, the antenna performance robustness to human body loading and bending is also studied experimentally. Hence, the integrated antenna-EBG is a suitable candidate for many wearable applications, including healthcare devices and related applications.
机译:介绍了一种紧凑的织物天线结构,与电磁带隙结构(EBG)集成在2.36GHz和2.40GHz之间进行2.36GHz和2.40 GHz的用于医疗体积网络(MBans)。灵活的系统应用的需求,天线优选地是低调,紧凑,指导,并且必须满足人体的负载效果。 EBGS对此类要求具有吸引力的解决方案,并提供有效的性能。与前面的记录的EBG支持天线设计相比,所提出的EBG表现为从天线到人体的屏蔽,减小尺寸,并用作散热器。 EBGS由于人体而降低了频率静脉,并降低了后辐射,提高了天线效率。所提出的天线系统的整体尺寸为46×46×2.4mm 3。计算和实验结果达到了7.2dBi的增益,前后比(FBR)为12.2dB,效率分别为74.8%。与没有EBG的天线相比,特定的吸收率(SAR)证明了超过95%的减少。此外,还在实验上研究了人体装载和弯曲的天线性能稳健性。因此,集成的天线-EBG是许多可穿戴应用的合适候选者,包括医疗设备和相关应用。

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