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Design and performance analysis of a conformal CPW fed wideband antenna with Mu-Negative metamaterial for wearable applications

机译:具有Mu-Neg负材料的可穿戴CPW保形宽带CPW天线的设计和性能分析

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摘要

In this paper, a flexible CPW fed ultrawide band (UWB) antenna with mu-negative (MNG) metamaterial is designed, fabricated, and tested for wearable applications. Initially, a UWB antenna of size 50 mm x 43 mm is fabricated on two different substrates, viz. flexible FR4 and semi-flexible Rogers RT/duroid 5880. A metamaterial structure fabricated on flexible FR4 shows a magnetic resonance from 7.2 GHz to 9.2 GHz with maximum stop band attenuation (-49 dB) and high MNG value (-2121.6) at 7.87 GHz. Then a (3 x 3) array of designed MNG metasurface is used as ground plane with flexible UWB antenna, which improves its overall gain and radiation pattern. The performance of the flexible antenna with/without metamaterial at various distances from flat and cylindrical three-layered human phantom of skin, fat, and muscle is studied. Further, the bending characteristics at different angles and performance over thin metallic sheet is also evaluated. Additionally, the peak specific absorption rate value averaged over 1 g of tissue at three chosen frequencies from UWB range (3, 5, 10 GHz) with/without metamaterial using 0.3 and 0.1 W of input power is also analyzed. The simulated and measured results are in good agreement which confirms that the designed antenna is a good candidate for wearable applications.
机译:在本文中,针对可穿戴应用设计,制造并测试了带有mu负(MNG)超材料的柔性CPW馈电超宽带(UWB)天线。最初,在两个不同的基板上制造尺寸为50 mm x 43 mm的UWB天线。柔性FR4和半柔性Rogers RT / duroid5880。在柔性FR4上制造的超材料结构显示出7.2 GHz至9.2 GHz的磁共振,具有最大阻带衰减(-49 dB)和高MNG值(-2121.6)在7.87 GHz 。然后,将(3 x 3)设计的MNG超表面阵列用作带有柔性UWB天线的地平面,从而改善了其整体增益和辐射方向图。研究了具有/不具有超材料的柔性天线在距皮肤,脂肪和肌肉的平面和圆柱三层人体模型不同距离处的性能。此外,还评估了在薄金属板上的不同角度的弯曲特性和性能。此外,还分析了在使用和不使用超材料的情况下,使用0.3和0.1 W输入功率从UWB范围(3、5、10 GHz)中选择的三个频率下,在1 g组织上平均的峰值比吸收率值。仿真和测量结果吻合良好,这证实了所设计的天线是可穿戴应用的理想选择。

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