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Design and integration of dual band textile antenna with high impedance surface

机译:高阻抗表面双频纺织天线的设计与集成

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This paper describes self conceived design of new dual band wearable PIFA operating at Wifi bands (2.40 & 5.80GHz). Different radiating elements used in this indigenous design, outcomes dual mode resonance. The considered design approach has quasi omni-directional pattern that leads to significant back radiations resulting high value of Specific Absorption Rate (SAR), usually not desirable in wearable application. To overcome this issue, the antenna is integrated with dual band high impedance surface (HIS). This modular integration results in reduction of back radiations by 4–15dB at operating frequencies. Sequel to reduction in back radiations, SAR has also been reduced at the operating frequencies, while evaluating its design response for on-body environment. In addition to these improvements, antenna gain has been increased by 8–9dBi along with improvement in return loss by 23–27dB at the operating frequencies. CST Microwave Studio has been used for the design and simulations.
机译:本文介绍了在Wifi频段(2.40和5.80GHz)下运行的新型双频可穿戴PIFA的自行设计。在本机设计中使用了不同的辐射元件,导致了双模共振。所考虑的设计方法具有准全向模式,会导致大量的反向辐射,从而导致较高的比吸收率(SAR)值,这在可穿戴应用中通常是不希望的。为了克服这个问题,天线与双频带高阻抗表面(HIS)集成在一起。这种模块化的集成可以在工作频率下将反向辐射降低4-15dB。在减少背辐射的同时,SAR也已在工作频率上降低了,同时评估了其对人体环境的设计响应。除了这些改进之外,在工作频率下,天线增益还增加了8–9dBi,同时回波损耗也提高了23–27dB。 CST Microwave Studio已用于设计和仿真。

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