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Design of Low-SAR Mobile Phone Antenna: Theory and Applications

机译:低SAR手机天线设计:理论与应用

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This article focuses on the design of a low specific absorption rate (SAR) mobile phone antennas. First, the interaction mechanism of the radiation fields of mobile phone antennas with nearby human tissues is analyzed by using boundary conditions of electromagnetics. The relations between SAR and the electric field are constructed. Then, a concept of reverse current is proposed to decrease the electric field radiated by the antenna at the air-tissue interface and, consequently, reduce the SAR of human tissues. Finally, a metal-rimmed mobile phone antenna is designed according to the proposed theory. The ground clearance of the designed antenna is 2 mm. Their measured normalized peak head and body SAR values are lower than 1.0 W/kg, much less than the SAR safety limit of 1.6 W/kg according to the guidelines of IEEE and FCC or 2.0 W/kg according to the guidelines of the International Commission on Non-Ionizing Radiation Protection (ICNIRP). The measured -6 dB impedance bandwidths are 830-1040 and 1670-2730 MHz, respectively. The measured efficiencies are higher than -5 dB at the lower band and -4 dB at the higher band. The measured results prove that the proposed theory can provide guidance for the design of low-SAR mobile phone antennas.
机译:本文侧重于设计低特定的吸收率(SAR)手机天线。首先,通过使用电磁的边界条件分析具有附近的人组织的移动电话天线的辐射场的相互作用机理。构建了SAR和电场之间的关系。然后,提出了一种反向电流的概念,以减少由天线在空气组织界面处辐射的电场,从而减少人组织的SAR。最后,根据所提出的理论设计金属镶边手机天线。设计天线的地间隙为2毫米。根据国际委员会的指导原则,它们测量的归一化峰头和体SAR值低于1.0W / kg,远低于IEEE和FCC或2.0 W / KG的1.6 W / kg的SAR安全限制关于非电离辐射防护(ICNIRP)。测量的-6 dB阻抗带宽分别为830-1040和1670-2730 MHz。测量的效率高于-5dB,在较高频段和-4 dB处。测量结果证明,该理论可以为低SA​​R手机天线设计提供指导。

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