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A 2.45 GHz wearable antenna using conductive graphene and polymer substrate

机译:使用导电石墨烯和聚合物基材的2.45GHz可穿戴天线

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This paper presented the integration of conductive graphene sheet on flexible polydimethysiloxane (PDMS) substrate layer at a 2.45 GHz Industrial, Scientific and Medical (ISM) band. Significant gain improvement is observed when integrating graphene as an antenna patch and ground, as compared to a reference antenna made from copper, a conventional material for antenna development. The resonance frequency is slightly shifted to a lower frequency when the antenna is bent in x- and y-directions with minimum bending radius. The effect of human body on antenna performances is characterized by attaches the proposed antenna on human Voxel model. The characterization results shown a good and comparable antenna performance is achieved by integrating conductive graphene as flexible antenna.
机译:本文介绍了在2.45GHz工业,科学和医疗(ISM)频段的柔性聚二甲基硅氧烷(PDMS)底物层上的导电石墨烯片的整合。 与由铜制成的参考天线相比,在将石墨烯作为天线贴片和地面相比,观察到显着的增益改善,与由铜制成的用于天线开发的常规材料。 当天线在具有最小弯曲半径的X和Y方向上弯曲时,谐振频率略微移至较低的频率。 人体对天线性能的影响的特征在于将所提出的天线附着在人体素模型上。 通过将导电石墨烯作为柔性天线将导电石墨烯集成为实现良好和可比天线性能的表征结果。

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