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SAR reduction using a single SRR superstrate for a dual-band antenna

机译:SAR使用单个SRR超级晶体用于双频天线

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A dual-band microstrip antenna operating at GSM 900 and GSM 1800 MHz is designed initially. Then a single split ring resonator (SRR) structure is used as a superstrate for this dual-band antenna. A circular current is induced in the SRR due to the perpendicular plane wave excitation, which in turn leads to an electric excitation coupled to the magnetic resonance. It also exhibits higher order excitations at 0.9 and 1.8 GHz which ultimately resulted in specific absorption rate (SAR) reduction of human head at both the designed frequencies of the antenna. The antenna and the SRR superstrate are printed on a 1.6 mm thick FR-4 substrate of dimension 59.6 x 49.6 mm(2). Analysis of the SRR using the classic waveguide theory approach is discussed. Radiation pattern of the antenna in the presence of SRR superstrate and human head is also discussed. Prototype of the antenna along with the SRR superstrate is fabricated and measured for return loss and radiation pattern. Measurement results fairly agree with the simulated results. A human head phantom is utilized in the calculation of SAR.
机译:最初设计在GSM 900和GSM 1800MHz的双频微带天线。然后,单个分离环谐振器(SRR)结构用作该双频天线的超级夹具。由于垂直平面波激发,在SRR中引起圆电流,其又导致耦合到磁共振的电激励。它还在0.9和1.8 GHz下表现出更高的顺序激发,最终导致了天线的设计频率的人头部的特定吸收率(SAR)。天线和SRR超晶体在1.6mm厚的FR-4尺寸的尺寸59.6×49.6mm(2)上。讨论了使用经典波导理论方法的SRR分析。还讨论了SRR塑性和人头存在下天线的辐射图案。对于退回损耗和辐射图案,制造和测量天线的原型以及SRR超级晶体。测量结果与模拟结果相得同。在SAR的计算中使用人头幻影。

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